---
OA_place: repository
OA_type: green
_id: '20431'
abstract:
- lang: eng
  text: Haptotaxis is the process of directed cell migration along gradients of extracellular
    matrix density and is central to morphogenesis, immune responses and cancer invasion.
    It is commonly assumed that cells respond to these gradients by migrating directionally
    towards the regions of highest ligand density. In contrast with this view, here
    we show that cells exposed to micropatterned fibronectin gradients exhibit a wide
    range of complex trajectories, including directed haptotactic migration up the
    gradient but also linear oscillations and circles with extended periods of migration
    down the gradient. To explain this behaviour, we developed a biophysical model
    of haptotactic cell migration based on a coarse-grained molecular clutch model
    coupled to persistent stochastic polarity dynamics. Although initial haptotactic
    migration is explained by the differential friction at the front and back of the
    cell, the observed complex trajectories over longer timescales arise from the
    interplay between differential friction, persistence and physical confinement.
    Overall, our study reveals that confinement and persistence modulate the ability
    of cells to sense and respond to haptotactic cues and provides a framework for
    understanding how cells navigate complex environments.
acknowledgement: We thank all the members of our groups for discussions and support.
  We thank A. Menéndez, S. Usieto, M. Purciolas and E. Coderch for technical assistance.
  We thank G. Charras (London Centre for Nanotechnology, UK) and M. Sheetz (Columbia
  University, USA) for sharing cells used in this work. We thank J. Ivaska (University
  of Turku, Finland) for sharing integrin α5-GFP DNA plasmid. We thank P. Guillamat
  for technical advice and A. Labernardie for providing the microfluidic channels.
  We thank M. Gómez-González for sharing the 2D traction microscopy algorithm. Finally,
  we thank P. Guillamat, J. Abenza, G. Ceada, L. Faure, E. Dalaka, M. Matejčić, A.
  Beedle, I. Granero, O. Baguer, A. Albajar and N. Chahare for discussions. This paper
  was funded by the Generalitat de Catalunya (Grant Nos. AGAUR SGR-2017-01602 to X.T.
  and 2021 SGR 00523 to R.S. and the CERCA Programme and ICREA Academia awards to
  P.R.-C.), the Spanish Ministry for Science and Innovation MICCINN/FEDER (Grant Nos.
  PID2021-128635NB-I00, MCIN/AEI/10.13039/501100011033 and ERDF-EU A way of making
  Europe to X.T., PID2021-128674OB-I00 and CNS2022-135533 to R.S. and PID2019-110298GB-I00
  to P.R.-C.), the European Research Council (Grant Nos. 101097753 to P.R.-C. and
  Adv-883739 to X.T.), Fundació la Marató de TV3 (Project Award 201903-30-31-32 to
  X.T.), the European Commission (Grant No. H2020-FETPROACT-01-2016-731957 to P.R.-C.
  and X.T.) and La Caixa Foundation (Grant No. LCF/PR/HR20/52400004 to P.R.-C. and
  X.T.). R.S. is a Serra-Hunter fellow. D.B.B. was supported by the NOMIS foundation
  as a NOMIS fellow, by the European Molecular Biology Organization (Postdoctoral
  Fellowship ALTF 343-2022) and by the Austrian Academy of Sciences through an APART-MINT
  Fellowship. I.C.F. acknowledges support from the European Foundation for the Study
  of Chronic Liver Failure. IBEC is recipient of a Severo Ochoa Award of Excellence
  from MINECO.
article_processing_charge: No
article_type: original
author:
- first_name: Isabela Corina
  full_name: Fortunato, Isabela Corina
  last_name: Fortunato
- first_name: David
  full_name: Brückner, David
  id: e1e86031-6537-11eb-953a-f7ab92be508d
  last_name: Brückner
  orcid: 0000-0001-7205-2975
- first_name: Steffen
  full_name: Grosser, Steffen
  last_name: Grosser
- first_name: Rohit
  full_name: Nautiyal, Rohit
  last_name: Nautiyal
- first_name: Leone
  full_name: Rossetti, Leone
  last_name: Rossetti
- first_name: Miquel
  full_name: Bosch-Padrós, Miquel
  last_name: Bosch-Padrós
- first_name: Jonel
  full_name: Trebicka, Jonel
  last_name: Trebicka
- first_name: Pere
  full_name: Roca-Cusachs, Pere
  last_name: Roca-Cusachs
- first_name: Raimon
  full_name: Sunyer, Raimon
  last_name: Sunyer
- first_name: Edouard B
  full_name: Hannezo, Edouard B
  id: 3A9DB764-F248-11E8-B48F-1D18A9856A87
  last_name: Hannezo
  orcid: 0000-0001-6005-1561
- first_name: Xavier
  full_name: Trepat, Xavier
  last_name: Trepat
citation:
  ama: Fortunato IC, Brückner D, Grosser S, et al. Single-cell migration along and
    against confined haptotactic gradients. <i>Nature Physics</i>. 2025;21:1638-1647.
    doi:<a href="https://doi.org/10.1038/s41567-025-03015-3">10.1038/s41567-025-03015-3</a>
  apa: Fortunato, I. C., Brückner, D., Grosser, S., Nautiyal, R., Rossetti, L., Bosch-Padrós,
    M., … Trepat, X. (2025). Single-cell migration along and against confined haptotactic
    gradients. <i>Nature Physics</i>. Springer Nature. <a href="https://doi.org/10.1038/s41567-025-03015-3">https://doi.org/10.1038/s41567-025-03015-3</a>
  chicago: Fortunato, Isabela Corina, David Brückner, Steffen Grosser, Rohit Nautiyal,
    Leone Rossetti, Miquel Bosch-Padrós, Jonel Trebicka, et al. “Single-Cell Migration
    along and against Confined Haptotactic Gradients.” <i>Nature Physics</i>. Springer
    Nature, 2025. <a href="https://doi.org/10.1038/s41567-025-03015-3">https://doi.org/10.1038/s41567-025-03015-3</a>.
  ieee: I. C. Fortunato <i>et al.</i>, “Single-cell migration along and against confined
    haptotactic gradients,” <i>Nature Physics</i>, vol. 21. Springer Nature, pp. 1638–1647,
    2025.
  ista: Fortunato IC, Brückner D, Grosser S, Nautiyal R, Rossetti L, Bosch-Padrós
    M, Trebicka J, Roca-Cusachs P, Sunyer R, Hannezo EB, Trepat X. 2025. Single-cell
    migration along and against confined haptotactic gradients. Nature Physics. 21,
    1638–1647.
  mla: Fortunato, Isabela Corina, et al. “Single-Cell Migration along and against
    Confined Haptotactic Gradients.” <i>Nature Physics</i>, vol. 21, Springer Nature,
    2025, pp. 1638–47, doi:<a href="https://doi.org/10.1038/s41567-025-03015-3">10.1038/s41567-025-03015-3</a>.
  short: I.C. Fortunato, D. Brückner, S. Grosser, R. Nautiyal, L. Rossetti, M. Bosch-Padrós,
    J. Trebicka, P. Roca-Cusachs, R. Sunyer, E.B. Hannezo, X. Trepat, Nature Physics
    21 (2025) 1638–1647.
corr_author: '1'
date_created: 2025-10-05T22:01:36Z
date_published: 2025-10-01T00:00:00Z
date_updated: 2026-01-05T14:26:28Z
day: '01'
department:
- _id: EdHa
doi: 10.1038/s41567-025-03015-3
external_id:
  isi:
  - '001581659900001'
intvolume: '        21'
isi: 1
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.1101/2024.12.02.626413
month: '10'
oa: 1
oa_version: Preprint
page: 1638-1647
project:
- _id: 34e2a5b5-11ca-11ed-8bc3-b2265616ef0b
  grant_number: ALTF 343-2022
  name: A mechano-chemical theory for stem cell fate decisions in organoid development
publication: Nature Physics
publication_identifier:
  eissn:
  - 1745-2481
  issn:
  - 1745-2473
publication_status: published
publisher: Springer Nature
quality_controlled: '1'
scopus_import: '1'
status: public
title: Single-cell migration along and against confined haptotactic gradients
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 21
year: '2025'
...
---
OA_type: closed access
_id: '20432'
abstract:
- lang: eng
  text: A rapidly increasing body of work reporting phenomena associated with lattice
    vibrations carrying angular momentum has led to the emergence of the field of
    chiral phonons. Some of these properties, such as the phonon magnetic moment,
    also occur in achiral phonons that are circularly or elliptically polarized, while
    the presence of chirality has additional implications for the types of interaction
    allowed between the phonons and light, electrons and other quasiparticles. In
    this Perspective we introduce a framework for classifying phonons with angular
    momentum, and provide illustrations of the different types using examples from
    the recent literature. Specifically, we suggest the term ‘axial phonon’ to encompass
    all phonons that carry angular momentum, real or pseudo, and reserve the term
    ‘chiral phonon’ for those phonons that break improper rotational symmetry. We
    hope that this scheme provides clarification on the matter of phonon chirality
    and will serve as a guide for future research.
acknowledgement: We thank A. V. Balatsky, E. Bousquet, A. Disa, S. Kamba, L. Klebl,
  R. Merlin, A. Srivastava, A. Stroppa, M. Udina, P. Wong and D. Xiao for valuable
  discussions. M.B. acknowledges support from SNSF Ambizione project number PZ00P2_216089.
  P.B. and U.N. acknowledge funding from the Deutsche Forschungsgemeinschaft (grant
  number 541503763). B.F. acknowledges support from the National Science Foundation
  under grant number NSF DMR-2144086. G.G. acknowledges support from STeP2 number
  ANR-22-EXES-0013, QuantExt number ANR-23-CE30-0001-01, Audace CEA number ANR-24-RRII-0004
  and the École Polytechnique foundation. A.I.K. acknowledges the Nederlandse Organisatie
  voor Wetenschappelijk Onderzoek (NWO-I) for their financial contribution, including
  the support of the HFML-FELIX Laboratory. D.M.J. acknowledges support from Tel Aviv
  University and ERC Starting Grant CHIRALPHONONICS grant number 101166037. S.F.M.
  acknowledges funding from the Deutsche Forschungsgemeinschaft (grant number 469405347).
  C.P.R. and N.A.S. were supported by ETH Zurich and by the European Union and Horizon
  2020, grant agreement numbers 810451 and 101030352. R.M.G. acknowledges support
  from the Swedish Research Council (VR starting grant number 2022-03350), the Olle
  Engkvist Foundation (grant number 229-0443), the Royal Physiographic Society in
  Lund (Horisont), the Knut and Alice Wallenberg Foundation (grant number 2023.0087)
  and Chalmers University of Technology via the Department of Physics and the Areas
  of Advance Nano and Materials Science. Q.N. is supported by the National Natural
  Science Foundation of China (grant number 12234017) and the National Key Research
  and Development Program of China (grant number 2023YFA1406300). H.R. acknowledges
  funding from the Engineering and Physical Sciences Research Council (grant number
  UKRI122) and Royal Society (grant number IES\R2\242309). T.S. acknowledges support
  from MEXT X-NICS (grant number JPJ011438), NINS OML Project (grant number OML012301)
  and JST CREST (grant number JPMJCR24R5). H.Z. acknowledges support from the Welch
  Foundation (grant number C-2128) and the National Science Foundation (grant number
  DMR-2240106). We acknowledge support from the Centre Européen de Calcul Atomique
  et Moléculaire (CECAM) in connection to organizing the workshop "Chiral Phonons
  in Quantum Materials", held in 2023, where the idea for this paper emerged.
article_processing_charge: No
article_type: original
author:
- first_name: Dominik M.
  full_name: Juraschek, Dominik M.
  last_name: Juraschek
- first_name: R. Matthias
  full_name: Geilhufe, R. Matthias
  last_name: Geilhufe
- first_name: Hanyu
  full_name: Zhu, Hanyu
  last_name: Zhu
- first_name: Martina
  full_name: Basini, Martina
  last_name: Basini
- first_name: Peter
  full_name: Baum, Peter
  last_name: Baum
- first_name: Andrey
  full_name: Baydin, Andrey
  last_name: Baydin
- first_name: Swati
  full_name: Chaudhary, Swati
  last_name: Chaudhary
- first_name: Michael
  full_name: Fechner, Michael
  last_name: Fechner
- first_name: Benedetta
  full_name: Flebus, Benedetta
  last_name: Flebus
- first_name: Gael
  full_name: Grissonnanche, Gael
  last_name: Grissonnanche
- first_name: Andrei I.
  full_name: Kirilyuk, Andrei I.
  last_name: Kirilyuk
- first_name: Mikhail
  full_name: Lemeshko, Mikhail
  id: 37CB05FA-F248-11E8-B48F-1D18A9856A87
  last_name: Lemeshko
  orcid: 0000-0002-6990-7802
- first_name: Sebastian F.
  full_name: Maehrlein, Sebastian F.
  last_name: Maehrlein
- first_name: Maxime
  full_name: Mignolet, Maxime
  last_name: Mignolet
- first_name: Shuichi
  full_name: Murakami, Shuichi
  last_name: Murakami
- first_name: Qian
  full_name: Niu, Qian
  last_name: Niu
- first_name: Ulrich
  full_name: Nowak, Ulrich
  last_name: Nowak
- first_name: Carl P.
  full_name: Romao, Carl P.
  last_name: Romao
- first_name: Habib
  full_name: Rostami, Habib
  last_name: Rostami
- first_name: Takuya
  full_name: Satoh, Takuya
  last_name: Satoh
- first_name: Nicola A.
  full_name: Spaldin, Nicola A.
  last_name: Spaldin
- first_name: Hiroki
  full_name: Ueda, Hiroki
  last_name: Ueda
- first_name: Lifa
  full_name: Zhang, Lifa
  last_name: Zhang
citation:
  ama: Juraschek DM, Geilhufe RM, Zhu H, et al. Chiral phonons. <i>Nature Physics</i>.
    2025;21:1532-1540. doi:<a href="https://doi.org/10.1038/s41567-025-03001-9">10.1038/s41567-025-03001-9</a>
  apa: Juraschek, D. M., Geilhufe, R. M., Zhu, H., Basini, M., Baum, P., Baydin, A.,
    … Zhang, L. (2025). Chiral phonons. <i>Nature Physics</i>. Springer Nature. <a
    href="https://doi.org/10.1038/s41567-025-03001-9">https://doi.org/10.1038/s41567-025-03001-9</a>
  chicago: Juraschek, Dominik M., R. Matthias Geilhufe, Hanyu Zhu, Martina Basini,
    Peter Baum, Andrey Baydin, Swati Chaudhary, et al. “Chiral Phonons.” <i>Nature
    Physics</i>. Springer Nature, 2025. <a href="https://doi.org/10.1038/s41567-025-03001-9">https://doi.org/10.1038/s41567-025-03001-9</a>.
  ieee: D. M. Juraschek <i>et al.</i>, “Chiral phonons,” <i>Nature Physics</i>, vol.
    21. Springer Nature, pp. 1532–1540, 2025.
  ista: Juraschek DM, Geilhufe RM, Zhu H, Basini M, Baum P, Baydin A, Chaudhary S,
    Fechner M, Flebus B, Grissonnanche G, Kirilyuk AI, Lemeshko M, Maehrlein SF, Mignolet
    M, Murakami S, Niu Q, Nowak U, Romao CP, Rostami H, Satoh T, Spaldin NA, Ueda
    H, Zhang L. 2025. Chiral phonons. Nature Physics. 21, 1532–1540.
  mla: Juraschek, Dominik M., et al. “Chiral Phonons.” <i>Nature Physics</i>, vol.
    21, Springer Nature, 2025, pp. 1532–40, doi:<a href="https://doi.org/10.1038/s41567-025-03001-9">10.1038/s41567-025-03001-9</a>.
  short: D.M. Juraschek, R.M. Geilhufe, H. Zhu, M. Basini, P. Baum, A. Baydin, S.
    Chaudhary, M. Fechner, B. Flebus, G. Grissonnanche, A.I. Kirilyuk, M. Lemeshko,
    S.F. Maehrlein, M. Mignolet, S. Murakami, Q. Niu, U. Nowak, C.P. Romao, H. Rostami,
    T. Satoh, N.A. Spaldin, H. Ueda, L. Zhang, Nature Physics 21 (2025) 1532–1540.
date_created: 2025-10-05T22:01:37Z
date_published: 2025-10-01T00:00:00Z
date_updated: 2026-01-05T13:25:59Z
day: '01'
department:
- _id: MiLe
doi: 10.1038/s41567-025-03001-9
external_id:
  isi:
  - '001575765100001'
intvolume: '        21'
isi: 1
language:
- iso: eng
month: '10'
oa_version: None
page: 1532-1540
publication: Nature Physics
publication_identifier:
  eissn:
  - 1745-2481
  issn:
  - 1745-2473
publication_status: published
publisher: Springer Nature
quality_controlled: '1'
scopus_import: '1'
status: public
title: Chiral phonons
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 21
year: '2025'
...
---
OA_place: publisher
OA_type: diamond
PlanS_conform: '1'
_id: '20454'
abstract:
- lang: eng
  text: "Context. γ Dor stars are ideal targets for studies of the innermost dynamical
    properties of stars, due to their rich asteroseismic spectrum of gravity modes.
    Integrating internal magnetism to the picture appears as the next milestone of
    detailed asteroseismic studies, for its prime importance on stellar evolution.
    The inertial dip in prograde dipole modes period-spacing pattern of γ Dors stands
    out as a unique window on the convective core structure and dynamics. Recent studies
    have highlighted the dependence of the dip structure on core density stratification,
    the contrast of the near-core Brunt-Väisälä frequency and rotation rate, as well
    as the core-to-near-core differential rotation. In addition, the effect of envelope
    magnetism has been derived on low-frequency magneto-gravito-inertial waves.\r\n\r\nAims.
    We revisited the inertial dip formation including core and envelope magnetism,
    and explored the probing power of this feature on dynamo-generated core fields.\r\n\r\nMethods.
    We considered as a first step a toroidal magnetic field with a bi-layer (core
    and envelope) Alfvén frequency. This configuration allowed us to revisit the coupling
    problem using our knowledge on both core magneto-inertial modes and envelope magneto-gravito-inertial
    modes. Using this configuration, we were able to stay in an analytical framework
    to exhibit the magnetic effects on the inertial dip shape and location. This configuration
    allowed a laboratory to be set up that moves us towards the comprehension of magnetic
    effects on the dip structure.\r\n\r\nResults. We show a shift of the inertial
    dip towards lower spin parameter values and a thinner dip with increasing core
    magnetic field’s strength, quite similar to the signature of differential rotation.
    The magnetic effects become sizeable when the ratio of the magnetic to the Coriolis
    effects is high enough. We explored the potential degeneracy of the magnetic effects
    with differential rotation. We studied the detectability of core magnetism, considering
    both observational constraints on the periods of the modes and potential gravito-inertial
    mode suppression."
acknowledgement: 'We thank the referee for their comments and suggestions which allowed
  us to improve the quality of this manuscript. L. Barrault and L. Bugnet gratefully
  acknowledge support from the European Research Council (ERC) under the Horizon Europe
  programme (Calcifer; Starting Grant agreement N°101165631). S. Mathis acknowledges
  support from the PLATO CNES grant at CEA/DAp. S. Mathis and J.S.G. Mombarg acknowledge
  support from the European Research Council through HORIZON ERC SyG Grant 4D-STAR
  101071505. While partially funded by the European Union, views and opinions expressed
  are however those of the authors only and do not necessarily reflect those of the
  European Union or the European Research Council. Neither the European Union nor
  the granting authority can be held responsible for them. L. Barrault thanks T. Van
  Reeth and C. Aerts for their invaluable teachings. The authors thank also the members
  of the Asteroseismology and Stellar Dynamics group of the Institute of Science and
  Technology Austria (ISTA) for very useful discussion: A. Cristea, L. Einramhof,
  K. M. Smith, S. Torres.'
article_number: A253
article_processing_charge: No
article_type: original
arxiv: 1
author:
- first_name: Lucas
  full_name: Barrault, Lucas
  id: 4471a8fd-32c1-11ee-a9a4-fb670d398f64
  last_name: Barrault
- first_name: Lisa Annabelle
  full_name: Bugnet, Lisa Annabelle
  id: d9edb345-f866-11ec-9b37-d119b5234501
  last_name: Bugnet
  orcid: 0000-0003-0142-4000
- first_name: S.
  full_name: Mathis, S.
  last_name: Mathis
- first_name: J. S.G.
  full_name: Mombarg, J. S.G.
  last_name: Mombarg
citation:
  ama: 'Barrault L, Bugnet LA, Mathis S, Mombarg JSG. Exploring the probing power
    of γ Dor’s inertial dip for core magnetism: The case of a toroidal field. <i>Astronomy
    &#38; Astrophysics</i>. 2025;701. doi:<a href="https://doi.org/10.1051/0004-6361/202555213">10.1051/0004-6361/202555213</a>'
  apa: 'Barrault, L., Bugnet, L. A., Mathis, S., &#38; Mombarg, J. S. G. (2025). Exploring
    the probing power of γ Dor’s inertial dip for core magnetism: The case of a toroidal
    field. <i>Astronomy &#38; Astrophysics</i>. EDP Sciences. <a href="https://doi.org/10.1051/0004-6361/202555213">https://doi.org/10.1051/0004-6361/202555213</a>'
  chicago: 'Barrault, Lucas, Lisa Annabelle Bugnet, S. Mathis, and J. S.G. Mombarg.
    “Exploring the Probing Power of γ Dor’s Inertial Dip for Core Magnetism: The Case
    of a Toroidal Field.” <i>Astronomy &#38; Astrophysics</i>. EDP Sciences, 2025.
    <a href="https://doi.org/10.1051/0004-6361/202555213">https://doi.org/10.1051/0004-6361/202555213</a>.'
  ieee: 'L. Barrault, L. A. Bugnet, S. Mathis, and J. S. G. Mombarg, “Exploring the
    probing power of γ Dor’s inertial dip for core magnetism: The case of a toroidal
    field,” <i>Astronomy &#38; Astrophysics</i>, vol. 701. EDP Sciences, 2025.'
  ista: 'Barrault L, Bugnet LA, Mathis S, Mombarg JSG. 2025. Exploring the probing
    power of γ Dor’s inertial dip for core magnetism: The case of a toroidal field.
    Astronomy &#38; Astrophysics. 701, A253.'
  mla: 'Barrault, Lucas, et al. “Exploring the Probing Power of γ Dor’s Inertial Dip
    for Core Magnetism: The Case of a Toroidal Field.” <i>Astronomy &#38; Astrophysics</i>,
    vol. 701, A253, EDP Sciences, 2025, doi:<a href="https://doi.org/10.1051/0004-6361/202555213">10.1051/0004-6361/202555213</a>.'
  short: L. Barrault, L.A. Bugnet, S. Mathis, J.S.G. Mombarg, Astronomy &#38; Astrophysics
    701 (2025).
corr_author: '1'
date_created: 2025-10-12T22:01:26Z
date_published: 2025-09-01T00:00:00Z
date_updated: 2026-02-19T09:32:04Z
day: '01'
ddc:
- '520'
department:
- _id: LiBu
- _id: GradSch
doi: 10.1051/0004-6361/202555213
external_id:
  arxiv:
  - '2507.00308'
  isi:
  - '001585834500002'
file:
- access_level: open_access
  checksum: 2c209b33119af4a251bab4a418a21075
  content_type: application/pdf
  creator: dernst
  date_created: 2025-10-13T07:05:55Z
  date_updated: 2025-10-13T07:05:55Z
  file_id: '20459'
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  file_size: 2503149
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has_accepted_license: '1'
intvolume: '       701'
isi: 1
language:
- iso: eng
month: '09'
oa: 1
oa_version: Published Version
project:
- _id: 914d8549-16d5-11f0-9cad-bbe6324c93a9
  grant_number: '101165631'
  name: 'Unveiling the mysteries of stellar dynamics: a pioneering journey in magnetoasteroseismology'
publication: Astronomy & Astrophysics
publication_identifier:
  eissn:
  - 1432-0746
  issn:
  - 0004-6361
publication_status: published
publisher: EDP Sciences
quality_controlled: '1'
scopus_import: '1'
status: public
title: 'Exploring the probing power of γ Dor''s inertial dip for core magnetism: The
  case of a toroidal field'
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 701
year: '2025'
...
---
OA_place: repository
OA_type: green
_id: '20455'
abstract:
- lang: eng
  text: Despite extensive research since the community learned about adversarial examples
    10 years ago, we still do not know how to train high-accuracy classifiers that
    are guaranteed to be robust to small perturbations of their inputs. Previous works
    often argued that this might be because no classifier exists that is robust and
    accurate at the same time. However, in computer vision this assumption does not
    match reality where humans are usually accurate and robust on most tasks of interest.
    We offer an alternative explanation and show that in certain settings robust generalization
    is only possible with unrealistically large amounts of data. Specifically, we
    find a setting where a robust classifier exists, it is easy to learn an accurate
    classifier, yet it requires an exponential amount of data to learn a robust classifier.
    Based on this theoretical result, we evaluate the influence of the amount of training
    data on datasets such as CIFAR10. Our findings indicate that the the amount of
    training data is the main factor determining the robust performance. Furthermore
    we show that that there are low magnitude directions in the data which are useful
    for non-robust generalization but are not available for robust classifiers. This
    implies that robust classification is a strictly harder tasks than normal classification,
    thereby providing an explanation why robust classification requires more data.
article_processing_charge: No
arxiv: 1
author:
- first_name: Bernd
  full_name: Prach, Bernd
  id: 2D561D42-C427-11E9-89B4-9C1AE6697425
  last_name: Prach
- first_name: Christoph
  full_name: Lampert, Christoph
  id: 40C20FD2-F248-11E8-B48F-1D18A9856A87
  last_name: Lampert
  orcid: 0000-0001-8622-7887
citation:
  ama: 'Prach B, Lampert C. Intriguing properties of robust classification. In: <i>2025
    IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops</i>.
    IEEE; 2025:660-669. doi:<a href="https://doi.org/10.1109/CVPRW67362.2025.00071">10.1109/CVPRW67362.2025.00071</a>'
  apa: 'Prach, B., &#38; Lampert, C. (2025). Intriguing properties of robust classification.
    In <i>2025 IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops</i>
    (pp. 660–669). Nashville, TN, United States: IEEE. <a href="https://doi.org/10.1109/CVPRW67362.2025.00071">https://doi.org/10.1109/CVPRW67362.2025.00071</a>'
  chicago: Prach, Bernd, and Christoph Lampert. “Intriguing Properties of Robust Classification.”
    In <i>2025 IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops</i>,
    660–69. IEEE, 2025. <a href="https://doi.org/10.1109/CVPRW67362.2025.00071">https://doi.org/10.1109/CVPRW67362.2025.00071</a>.
  ieee: B. Prach and C. Lampert, “Intriguing properties of robust classification,”
    in <i>2025 IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops</i>,
    Nashville, TN, United States, 2025, pp. 660–669.
  ista: 'Prach B, Lampert C. 2025. Intriguing properties of robust classification.
    2025 IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops.
    CVPR: Conference on Computer Vision and Pattern Recognition, 660–669.'
  mla: Prach, Bernd, and Christoph Lampert. “Intriguing Properties of Robust Classification.”
    <i>2025 IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops</i>,
    IEEE, 2025, pp. 660–69, doi:<a href="https://doi.org/10.1109/CVPRW67362.2025.00071">10.1109/CVPRW67362.2025.00071</a>.
  short: B. Prach, C. Lampert, in:, 2025 IEEE/CVF Conference on Computer Vision and
    Pattern Recognition Workshops, IEEE, 2025, pp. 660–669.
conference:
  end_date: 2025-06-12
  location: Nashville, TN, United States
  name: 'CVPR: Conference on Computer Vision and Pattern Recognition'
  start_date: 2025-06-11
corr_author: '1'
date_created: 2025-10-12T22:01:26Z
date_published: 2025-06-15T00:00:00Z
date_updated: 2025-10-13T07:18:26Z
day: '15'
department:
- _id: ChLa
doi: 10.1109/CVPRW67362.2025.00071
external_id:
  arxiv:
  - '2412.04245'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2412.04245
month: '06'
oa: 1
oa_version: Preprint
page: 660-669
publication: 2025 IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops
publication_identifier:
  eissn:
  - 2160-7516
  isbn:
  - '9798331599942'
  issn:
  - 2160-7508
publication_status: published
publisher: IEEE
quality_controlled: '1'
related_material:
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  - id: '18874'
    relation: earlier_version
    status: public
scopus_import: '1'
status: public
title: Intriguing properties of robust classification
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20457'
abstract:
- lang: eng
  text: Patch-clamp recording of miniature postsynaptic currents (mPSCs, or ‘minis’)
    is used extensively to investigate the functional properties of synapses. With
    this approach, spontaneous synaptic transmission events are recorded in an attempt
    to determine quantal synaptic parameters or the effect of synaptic manipulations.
    However, at the majority of brain synapses these events are small, with many undetectable
    due to recording noise. The effects of incomplete detection were well appreciated
    in the early years of synaptic physiology analysis, but appear to be increasingly
    forgotten. Here we sought to characterise the consequences of incomplete detection
    on the interpretability of mini analysis, using simulated mPSC data to give full
    control over event parameters. We demonstrate that commonly reported measures
    such as mean event amplitude and frequency, are misrepresented by the loss of
    undetected events. Probabilistic loss of small events results in detected event
    amplitude distributions that appear biologically complete, yet do not reflect
    the underlying synaptic properties. With both simulated and experimental datasets,
    we demonstrate that specific changes in event amplitude are primarily detected
    as changes in frequency, compromising classical biological interpretations. To
    facilitate more robust data analysis and interpretation, we detail a means for
    experimental estimation of the event detection limit and provide practical recommendations
    for data analysis. Together, our study highlights how mini analysis is prone to
    falsely reporting synaptic changes, raising awareness of these considerations,
    and provides a framework for more robust data analysis and interpretation.
acknowledgement: This work was supported by Biological Services teams at both the
  Laboratory of Molecular Biology and Ares facilities. The authors are very grateful
  to Prof. Helmut Kessels and Dr. Hinze Ho for initial discussions that led to this
  study, Dr. Andrew Penn for constructive feedback on the project, Xinyao Dou for
  comments on the study, and Profs. Peter Jonas and Roger Nicoll for feedback on the
  manuscript. Funding was provided by the Medical Research Council (MRC – MC_U105174197
  to I.H.G.) and the European Union's Horizon 2020 programme through a Marie Skłodowska-Curie
  Actions Individual Fellowship (MSCA-IF 101026635 to J.F.W.).
article_processing_charge: Yes (in subscription journal)
article_type: original
author:
- first_name: Ingo H.
  full_name: Greger, Ingo H.
  last_name: Greger
- first_name: Jake
  full_name: Watson, Jake
  id: 63836096-4690-11EA-BD4E-32803DDC885E
  last_name: Watson
  orcid: 0000-0002-8698-3823
citation:
  ama: Greger IH, Watson J. ‘Mini analysis’ misrepresents changes in synaptic properties
    due to incomplete event detection. <i>Journal of Physiology</i>. 2025;603(22):7189-7205.
    doi:<a href="https://doi.org/10.1113/JP288183">10.1113/JP288183</a>
  apa: Greger, I. H., &#38; Watson, J. (2025). ‘Mini analysis’ misrepresents changes
    in synaptic properties due to incomplete event detection. <i>Journal of Physiology</i>.
    Wiley. <a href="https://doi.org/10.1113/JP288183">https://doi.org/10.1113/JP288183</a>
  chicago: Greger, Ingo H., and Jake Watson. “‘Mini Analysis’ Misrepresents Changes
    in Synaptic Properties Due to Incomplete Event Detection.” <i>Journal of Physiology</i>.
    Wiley, 2025. <a href="https://doi.org/10.1113/JP288183">https://doi.org/10.1113/JP288183</a>.
  ieee: I. H. Greger and J. Watson, “‘Mini analysis’ misrepresents changes in synaptic
    properties due to incomplete event detection,” <i>Journal of Physiology</i>, vol.
    603, no. 22. Wiley, pp. 7189–7205, 2025.
  ista: Greger IH, Watson J. 2025. ‘Mini analysis’ misrepresents changes in synaptic
    properties due to incomplete event detection. Journal of Physiology. 603(22),
    7189–7205.
  mla: Greger, Ingo H., and Jake Watson. “‘Mini Analysis’ Misrepresents Changes in
    Synaptic Properties Due to Incomplete Event Detection.” <i>Journal of Physiology</i>,
    vol. 603, no. 22, Wiley, 2025, pp. 7189–205, doi:<a href="https://doi.org/10.1113/JP288183">10.1113/JP288183</a>.
  short: I.H. Greger, J. Watson, Journal of Physiology 603 (2025) 7189–7205.
corr_author: '1'
date_created: 2025-10-12T22:01:27Z
date_published: 2025-11-15T00:00:00Z
date_updated: 2026-01-05T13:13:32Z
day: '15'
ddc:
- '570'
department:
- _id: PeJo
doi: 10.1113/JP288183
ec_funded: 1
external_id:
  isi:
  - '001581924700001'
  pmid:
  - '41015537'
file:
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  date_created: 2026-01-05T13:13:06Z
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  success: 1
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has_accepted_license: '1'
intvolume: '       603'
isi: 1
issue: '22'
language:
- iso: eng
month: '11'
oa: 1
oa_version: Published Version
page: 7189-7205
pmid: 1
project:
- _id: fc2be41b-9c52-11eb-aca3-faa90aa144e9
  call_identifier: H2020
  grant_number: '101026635'
  name: Synaptic computations of the hippocampal CA3 circuitry
publication: Journal of Physiology
publication_identifier:
  eissn:
  - 1469-7793
  issn:
  - 0022-3751
publication_status: published
publisher: Wiley
quality_controlled: '1'
related_material:
  link:
  - relation: software
    url: https://github.com/jakefwatson/miniplace
scopus_import: '1'
status: public
title: ‘Mini analysis’ misrepresents changes in synaptic properties due to incomplete
  event detection
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 603
year: '2025'
...
---
OA_place: publisher
_id: '20467'
acknowledged_ssus:
- _id: Bio
- _id: SSU
- _id: PreCl
- _id: LifeSc
acknowledgement: "The work presented in this Thesis was carried out at the Institute
  of Science and Technology\r\nAustria (ISTA), and was supported by the Austrian Science
  Fund (FWF) [10.55776/P37131].\r\nI would like to thank the Scientific Service Units
  (SSU) of ISTA for the provided resources,\r\nspecifically the Imaging and Optics
  Facility (IOF), the Lab Support Facility (LSF), and the\r\nPre-Clinical Facility
  (PCF) team, specifically Sonja Haslinger, Claudia Gold, and Michael\r\nSchunn, for
  mouse colony management and support. "
alternative_title:
- ISTA Thesis
article_processing_charge: No
author:
- first_name: Florianne E
  full_name: Miteva, Florianne E
  id: 3526230C-F248-11E8-B48F-1D18A9856A87
  last_name: Miteva
citation:
  ama: Miteva FE. The role of cyclooxygenase 1 on microglial response to inflammatory
    stressors. 2025. doi:<a href="https://doi.org/10.15479/AT-ISTA-20467">10.15479/AT-ISTA-20467</a>
  apa: Miteva, F. E. (2025). <i>The role of cyclooxygenase 1 on microglial response
    to inflammatory stressors</i>. Institute of Science and Technology Austria. <a
    href="https://doi.org/10.15479/AT-ISTA-20467">https://doi.org/10.15479/AT-ISTA-20467</a>
  chicago: Miteva, Florianne E. “The Role of Cyclooxygenase 1 on Microglial Response
    to Inflammatory Stressors.” Institute of Science and Technology Austria, 2025.
    <a href="https://doi.org/10.15479/AT-ISTA-20467">https://doi.org/10.15479/AT-ISTA-20467</a>.
  ieee: F. E. Miteva, “The role of cyclooxygenase 1 on microglial response to inflammatory
    stressors,” Institute of Science and Technology Austria, 2025.
  ista: Miteva FE. 2025. The role of cyclooxygenase 1 on microglial response to inflammatory
    stressors. Institute of Science and Technology Austria.
  mla: Miteva, Florianne E. <i>The Role of Cyclooxygenase 1 on Microglial Response
    to Inflammatory Stressors</i>. Institute of Science and Technology Austria, 2025,
    doi:<a href="https://doi.org/10.15479/AT-ISTA-20467">10.15479/AT-ISTA-20467</a>.
  short: F.E. Miteva, The Role of Cyclooxygenase 1 on Microglial Response to Inflammatory
    Stressors, Institute of Science and Technology Austria, 2025.
corr_author: '1'
date_created: 2025-10-14T10:24:41Z
date_published: 2025-10-14T00:00:00Z
date_updated: 2026-05-20T06:37:12Z
day: '14'
ddc:
- '570'
degree_awarded: PhD
department:
- _id: GradSch
- _id: SaSi
doi: 10.15479/AT-ISTA-20467
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  embargo_to: open_access
  file_id: '20484'
  file_name: 2025_Miteva_Florianne_thesis.pdf
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  date_updated: 2025-10-23T11:33:06Z
  file_id: '20525'
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file_date_updated: 2025-10-23T11:33:06Z
has_accepted_license: '1'
language:
- iso: eng
month: '10'
oa_version: Published Version
page: '99'
project:
- _id: 7be82147-9f16-11ee-852c-f44682d73140
  grant_number: P37131
  name: Dissecting the morpho-functional relationship of microglia
publication_identifier:
  issn:
  - 2663-337X
publication_status: published
publisher: Institute of Science and Technology Austria
related_material:
  record:
  - id: '19566'
    relation: part_of_dissertation
    status: public
status: public
supervisor:
- first_name: Sandra
  full_name: Siegert, Sandra
  id: 36ACD32E-F248-11E8-B48F-1D18A9856A87
  last_name: Siegert
  orcid: 0000-0001-8635-0877
title: The role of cyclooxygenase 1 on microglial response to inflammatory stressors
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: dissertation
user_id: ba8df636-2132-11f1-aed0-ed93e2281fdd
year: '2025'
...
---
_id: '20471'
abstract:
- lang: eng
  text: 'Sick individuals often conceal their disease status to group members, thereby
    preventing social exclusion or aggression. Here we show by behavioural, chemical,
    immunological and infection load analyses that sick ant pupae instead actively
    emit a chemical signal that in itself is sufficient to trigger their own destruction
    by colony members. In our experiments, this altruistic disease-signalling was
    performed only by worker but not queen pupae. The lack of signalling by queen
    pupae did not constitute cheating behaviour, but reflected their superior immune
    capabilities. Worker pupae suffered from extensive pathogen replication whereas
    queen pupae were able to restrain their infection. Our data suggest the evolution
    of a finely-tuned signalling system in which it is not the induction of an individual’s
    immune response, but rather its failure to overcome the infection, that triggers
    pupal signalling for sacrifice. This demonstrates a balanced interplay between
    individual and social immunity that efficiently achieves whole-colony health. '
acknowledgement: 'We thank Joergen Eilenberg and Nicolai V. Meyling for the fungal
  strain, and the ISTA Social Immunity team, Jonghyun Park and Yuko Ulrich for ant
  collection. We also thank the Social Immunity team, in particular David Moreno Martínez,
  Tanvi Madaan, Wilfrid Jean Louis and Jessica Kirchner, for experimental and molecular
  support, as well as Friedrich Fochler for technical support with the chemical analysis,
  and the ISTA Lab Support Facility, including the mass spectrometry unit, for general
  and chemical laboratory support. We further thank Marco Ribezzi for advice on 13C
  calculations and Ernst Pittenauer for discussion of the chemical data, Chris Pull
  and Michael Sixt for project discussion and the Social Immunity team for comments
  on the manuscript. The study was funded by the European Research Council (ERC) under
  the European Union’s Horizon 2020 research and innovation Programme (No. 771402;
  EPIDEMICSonCHIP) to SC. '
article_processing_charge: No
author:
- first_name: Sylvia
  full_name: Cremer, Sylvia
  id: 2F64EC8C-F248-11E8-B48F-1D18A9856A87
  last_name: Cremer
  orcid: 0000-0002-2193-3868
citation:
  ama: Cremer S. Altruistic disease signalling in ant colonies. 2025. doi:<a href="https://doi.org/10.15479/AT-ISTA-20471">10.15479/AT-ISTA-20471</a>
  apa: Cremer, S. (2025). Altruistic disease signalling in ant colonies. Institute
    of Science and Technology Austria. <a href="https://doi.org/10.15479/AT-ISTA-20471">https://doi.org/10.15479/AT-ISTA-20471</a>
  chicago: Cremer, Sylvia. “Altruistic Disease Signalling in Ant Colonies.” Institute
    of Science and Technology Austria, 2025. <a href="https://doi.org/10.15479/AT-ISTA-20471">https://doi.org/10.15479/AT-ISTA-20471</a>.
  ieee: S. Cremer, “Altruistic disease signalling in ant colonies.” Institute of Science
    and Technology Austria, 2025.
  ista: Cremer S. 2025. Altruistic disease signalling in ant colonies, Institute of
    Science and Technology Austria, <a href="https://doi.org/10.15479/AT-ISTA-20471">10.15479/AT-ISTA-20471</a>.
  mla: Cremer, Sylvia. <i>Altruistic Disease Signalling in Ant Colonies</i>. Institute
    of Science and Technology Austria, 2025, doi:<a href="https://doi.org/10.15479/AT-ISTA-20471">10.15479/AT-ISTA-20471</a>.
  short: S. Cremer, (2025).
contributor:
- first_name: Erika
  id: 31B4E2D0-F248-11E8-B48F-1D18A9856A87
  last_name: Dawson
- first_name: Michaela
  id: 953894f3-25bd-11ec-8556-f70a9d38ef60
  last_name: Hönigsberger
- first_name: Niklas
  id: 2AC57FAC-F248-11E8-B48F-1D18A9856A87
  last_name: Kampleitner
- first_name: Anna V
  id: 406F989C-F248-11E8-B48F-1D18A9856A87
  last_name: Grasse
- first_name: Lukas
  id: 85f0e6d3-06b3-11ec-8982-8c5049fa4455
  last_name: Lindorfer
- first_name: Jennifer
  id: 7bc2734a-e2c6-11ea-9824-a2ed5f0662a8
  last_name: Robb
- first_name: Farnaz
  id: 0344bfb9-3feb-11ee-87e9-c27edc800bcd
  last_name: Beikzadeh Abbasi
- first_name: Florian
  id: 979E35EE-C996-11E9-8C7C-CF13E6697425
  last_name: Strahodinsky
- first_name: Hanna
  id: 8fc5c6f6-5903-11ec-abad-c83f046253e7
  last_name: Leitner
- first_name: Harikrishnan
  id: 876b6b34-8ff4-11ec-97c9-8d95a7aae416
  last_name: Rajendran
- first_name: Thomas
  last_name: Schmitt
- first_name: Sylvia
  id: 2F64EC8C-F248-11E8-B48F-1D18A9856A87
  last_name: Cremer
  orcid: 0000-0002-2193-3868
corr_author: '1'
date_created: 2025-10-16T09:02:16Z
date_published: 2025-10-16T00:00:00Z
date_updated: 2026-06-10T08:50:53Z
day: '16'
ddc:
- '570'
department:
- _id: SyCr
doi: 10.15479/AT-ISTA-20471
ec_funded: 1
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  date_created: 2025-10-16T08:52:07Z
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file_date_updated: 2025-10-16T08:52:26Z
has_accepted_license: '1'
keyword:
- host-parasite interactions
- social insects
- social immunity
- chemical communication
- cooperation
month: '10'
oa: 1
oa_version: Published Version
project:
- _id: 2649B4DE-B435-11E9-9278-68D0E5697425
  call_identifier: H2020
  grant_number: '771402'
  name: Epidemics in ant societies on a chip
publisher: Institute of Science and Technology Austria
related_material:
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    relation: used_in_publication
    status: public
status: public
title: Altruistic disease signalling in ant colonies
tmp:
  image: /images/cc_by_nc_nd.png
  legal_code_url: https://creativecommons.org/licenses/by-nc-nd/4.0/legalcode
  name: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International
    (CC BY-NC-ND 4.0)
  short: CC BY-NC-ND (4.0)
type: research_data
user_id: 68b8ca59-c5b3-11ee-8790-cd641c68093d
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20477'
abstract:
- lang: eng
  text: An electric double-layer capacitor (EDLC) stores energy by modulating the
    spatial distribution of ions in the electrolytic solution that it contains. We
    determine the mean-field timescales for planar EDLC relaxation to equilibrium
    after a potential difference is applied. We tackle first the fully symmetric case,
    where positive and negative ionic species have the same valence and diffusivity,
    and then the general, more complex, asymmetric case. Depending on the applied
    voltage and salt concentration, different regimes appear, revealing a remarkably
    rich phenomenology relevant for nanocapacitors.
acknowledgement: This work has received funding from the European Union’s Horizon
  2020 and Horizon Europe research and innovation programs under the Marie Skłodowska-Curie
  Grants No. 674979-NANOTRANS (I. P., P. B. W., B. R., E. T.), No. 101034413 (I. P.),
  and No. 101119598-FLUXIONIC (M. D., B. R., E. T.), as well as from the European
  Research Council under Grant No. 863473 (B. R.). B. R. acknowledges financial support
  from the French Agence Nationale de la Recherche (ANR) under Grant No. ANR-21-CE29-0021-02
  (DIADEM). I. P. thanks Anđela Šarić for further support at ISTA.
article_number: '148002'
article_processing_charge: Yes (via OA deal)
article_type: original
arxiv: 1
author:
- first_name: Ivan
  full_name: Palaia, Ivan
  id: 9c805cd2-4b75-11ec-a374-db6dd0ed57fa
  last_name: Palaia
  orcid: ' 0000-0002-8843-9485 '
- first_name: Adelchi J.
  full_name: Asta, Adelchi J.
  last_name: Asta
- first_name: Megh
  full_name: Dutta, Megh
  last_name: Dutta
- first_name: Patrick B.
  full_name: Warren, Patrick B.
  last_name: Warren
- first_name: Benjamin
  full_name: Rotenberg, Benjamin
  last_name: Rotenberg
- first_name: Emmanuel
  full_name: Trizac, Emmanuel
  last_name: Trizac
citation:
  ama: Palaia I, Asta AJ, Dutta M, Warren PB, Rotenberg B, Trizac E. Charging dynamics
    of electric double-layer nanocapacitors in mean field. <i>Physical Review Letters</i>.
    2025;135(14). doi:<a href="https://doi.org/10.1103/72b9-c8cq">10.1103/72b9-c8cq</a>
  apa: Palaia, I., Asta, A. J., Dutta, M., Warren, P. B., Rotenberg, B., &#38; Trizac,
    E. (2025). Charging dynamics of electric double-layer nanocapacitors in mean field.
    <i>Physical Review Letters</i>. American Physical Society. <a href="https://doi.org/10.1103/72b9-c8cq">https://doi.org/10.1103/72b9-c8cq</a>
  chicago: Palaia, Ivan, Adelchi J. Asta, Megh Dutta, Patrick B. Warren, Benjamin
    Rotenberg, and Emmanuel Trizac. “Charging Dynamics of Electric Double-Layer Nanocapacitors
    in Mean Field.” <i>Physical Review Letters</i>. American Physical Society, 2025.
    <a href="https://doi.org/10.1103/72b9-c8cq">https://doi.org/10.1103/72b9-c8cq</a>.
  ieee: I. Palaia, A. J. Asta, M. Dutta, P. B. Warren, B. Rotenberg, and E. Trizac,
    “Charging dynamics of electric double-layer nanocapacitors in mean field,” <i>Physical
    Review Letters</i>, vol. 135, no. 14. American Physical Society, 2025.
  ista: Palaia I, Asta AJ, Dutta M, Warren PB, Rotenberg B, Trizac E. 2025. Charging
    dynamics of electric double-layer nanocapacitors in mean field. Physical Review
    Letters. 135(14), 148002.
  mla: Palaia, Ivan, et al. “Charging Dynamics of Electric Double-Layer Nanocapacitors
    in Mean Field.” <i>Physical Review Letters</i>, vol. 135, no. 14, 148002, American
    Physical Society, 2025, doi:<a href="https://doi.org/10.1103/72b9-c8cq">10.1103/72b9-c8cq</a>.
  short: I. Palaia, A.J. Asta, M. Dutta, P.B. Warren, B. Rotenberg, E. Trizac, Physical
    Review Letters 135 (2025).
corr_author: '1'
date_created: 2025-10-16T13:09:30Z
date_published: 2025-09-29T00:00:00Z
date_updated: 2025-12-01T15:02:16Z
day: '29'
ddc:
- '530'
department:
- _id: AnSa
doi: 10.1103/72b9-c8cq
ec_funded: 1
external_id:
  arxiv:
  - '2301.00610'
  isi:
  - '001587121300010'
file:
- access_level: open_access
  checksum: e29809fea48b18217d1779980f7117c4
  content_type: application/pdf
  creator: dernst
  date_created: 2025-10-23T11:57:20Z
  date_updated: 2025-10-23T11:57:20Z
  file_id: '20526'
  file_name: 2025_PhysReviewLetters_Palaia.pdf
  file_size: 480414
  relation: main_file
  success: 1
file_date_updated: 2025-10-23T11:57:20Z
has_accepted_license: '1'
intvolume: '       135'
isi: 1
issue: '14'
language:
- iso: eng
month: '09'
oa: 1
oa_version: Published Version
project:
- _id: fc2ed2f7-9c52-11eb-aca3-c01059dda49c
  call_identifier: H2020
  grant_number: '101034413'
  name: 'IST-BRIDGE: International postdoctoral program'
publication: Physical Review Letters
publication_identifier:
  eissn:
  - 1079-7114
  issn:
  - 0031-9007
publication_status: published
publisher: American Physical Society
quality_controlled: '1'
scopus_import: '1'
status: public
title: Charging dynamics of electric double-layer nanocapacitors in mean field
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 135
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20478'
abstract:
- lang: eng
  text: 'We consider the Wigner minor process, i.e. the eigenvalues of an N\times
    N Wigner matrix H^{(N)} together with the eigenvalues of all its n\times n minors,
    H^{(n)}, n\le N. The top eigenvalues of H^{(N)} and those of its immediate minor
    H^{(N-1)} are very strongly correlated, but this correlation becomes weaker for
    smaller minors H^{(N-k)} as k increases. For the GUE minor process the critical
    transition regime around k\sim N^{2/3} was analyzed by Forrester and Nagao (J.
    Stat. Mech.: Theory and Experiment, 2011) providing an explicit formula for the
    nontrivial joint correlation function. We prove that this formula is universal,
    i.e. it holds for the Wigner minor process. Moreover, we give a complete analysis
    of the sub- and supercritical regimes both for eigenvalues and for the corresponding
    eigenvector overlaps, thus we prove the decorrelation transition in full generality.'
acknowledgement: Open access funding provided by Institute of Science and Technology
  (IST Austria). Zhigang Bao Supported by Hong Kong RGC Grant GRF 16304724, NSFC12222121
  and NSFC12271475. László Erdős, Joscha Henheik and Oleksii Kolupaiev Supported by
  the ERC Advanced Grant “RMTBeyond” No. 101020331.
article_processing_charge: Yes (via OA deal)
article_type: original
arxiv: 1
author:
- first_name: Zhigang
  full_name: Bao, Zhigang
  id: 442E6A6C-F248-11E8-B48F-1D18A9856A87
  last_name: Bao
  orcid: 0000-0003-3036-1475
- first_name: Giorgio
  full_name: Cipolloni, Giorgio
  id: 42198EFA-F248-11E8-B48F-1D18A9856A87
  last_name: Cipolloni
  orcid: 0000-0002-4901-7992
- first_name: László
  full_name: Erdös, László
  id: 4DBD5372-F248-11E8-B48F-1D18A9856A87
  last_name: Erdös
  orcid: 0000-0001-5366-9603
- first_name: Sven Joscha
  full_name: Henheik, Sven Joscha
  id: 31d731d7-d235-11ea-ad11-b50331c8d7fb
  last_name: Henheik
  orcid: 0000-0003-1106-327X
- first_name: Oleksii
  full_name: Kolupaiev, Oleksii
  id: 149b70d4-896a-11ed-bdf8-8c63fd44ca61
  last_name: Kolupaiev
  orcid: 0000-0003-1491-4623
citation:
  ama: Bao Z, Cipolloni G, Erdös L, Henheik SJ, Kolupaiev O. Decorrelation transition
    in the Wigner minor process. <i>Probability Theory and Related Fields</i>. 2025.
    doi:<a href="https://doi.org/10.1007/s00440-025-01422-4">10.1007/s00440-025-01422-4</a>
  apa: Bao, Z., Cipolloni, G., Erdös, L., Henheik, S. J., &#38; Kolupaiev, O. (2025).
    Decorrelation transition in the Wigner minor process. <i>Probability Theory and
    Related Fields</i>. Springer Nature. <a href="https://doi.org/10.1007/s00440-025-01422-4">https://doi.org/10.1007/s00440-025-01422-4</a>
  chicago: Bao, Zhigang, Giorgio Cipolloni, László Erdös, Sven Joscha Henheik, and
    Oleksii Kolupaiev. “Decorrelation Transition in the Wigner Minor Process.” <i>Probability
    Theory and Related Fields</i>. Springer Nature, 2025. <a href="https://doi.org/10.1007/s00440-025-01422-4">https://doi.org/10.1007/s00440-025-01422-4</a>.
  ieee: Z. Bao, G. Cipolloni, L. Erdös, S. J. Henheik, and O. Kolupaiev, “Decorrelation
    transition in the Wigner minor process,” <i>Probability Theory and Related Fields</i>.
    Springer Nature, 2025.
  ista: Bao Z, Cipolloni G, Erdös L, Henheik SJ, Kolupaiev O. 2025. Decorrelation
    transition in the Wigner minor process. Probability Theory and Related Fields.
  mla: Bao, Zhigang, et al. “Decorrelation Transition in the Wigner Minor Process.”
    <i>Probability Theory and Related Fields</i>, Springer Nature, 2025, doi:<a href="https://doi.org/10.1007/s00440-025-01422-4">10.1007/s00440-025-01422-4</a>.
  short: Z. Bao, G. Cipolloni, L. Erdös, S.J. Henheik, O. Kolupaiev, Probability Theory
    and Related Fields (2025).
corr_author: '1'
date_created: 2025-10-16T13:10:26Z
date_published: 2025-09-20T00:00:00Z
date_updated: 2026-06-18T18:23:40Z
day: '20'
ddc:
- '500'
department:
- _id: LaEr
doi: 10.1007/s00440-025-01422-4
ec_funded: 1
external_id:
  arxiv:
  - '2503.06549'
  isi:
  - '001574640900001'
isi: 1
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.1007/s00440-025-01422-4
month: '09'
oa: 1
oa_version: Published Version
project:
- _id: 62796744-2b32-11ec-9570-940b20777f1d
  call_identifier: H2020
  grant_number: '101020331'
  name: Random matrices beyond Wigner-Dyson-Mehta
publication: Probability Theory and Related Fields
publication_identifier:
  eissn:
  - 1432-2064
  issn:
  - 0178-8051
publication_status: epub_ahead
publisher: Springer Nature
quality_controlled: '1'
scopus_import: '1'
status: public
title: Decorrelation transition in the Wigner minor process
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20479'
abstract:
- lang: eng
  text: 'Genetic variation is generally regarded as a prerequisite for evolution.
    In principle, epigenetic information inherited independently of DNA sequence can
    also enable evolution, but whether this occurs in natural populations is unknown.
    Here we show that single-nucleotide and epigenetic gene body DNA methylation (gbM)
    polymorphisms explain comparable amounts of expression variance in <jats:italic>Arabidopsis
    thaliana</jats:italic> populations. We genetically demonstrate that gbM regulates
    transcription, and we identify and genetically validate many associations between
    gbM polymorphism and the variation of complex traits: fitness under heat and drought,
    flowering time and accumulation of diverse minerals. Epigenome-wide association
    studies pinpoint trait-relevant genes with greater precision than genetic association
    analyses, probably due to reduced linkage disequilibrium between gbM variants.
    Finally, we identify numerous associations between gbM epialleles and diverse
    environmental conditions in native habitats, suggesting that gbM facilitates adaptation.
    Overall, our results indicate that epigenetic methylation variation fundamentally
    shapes phenotypic diversity in a natural population.'
acknowledgement: We thank P. Baduel and V. Colot for sharing SV data, A. Muyle for
  gbM conservation data and X. Feng, C. Dean, E. Coen and Zilberman lab members for
  constructive comments on the paper. This work was supported by a European Research
  Council grant (725746) to D.Z., LUMS Startup grant (STG-188) to Z.S. and US National
  Science Foundation grant (MCB-2334561) to H.R. This study would not have been possible
  without Arabidopsis 1001 genome, methylome and transcriptome resources. Open access
  funding provided by Institute of Science and Technology (IST Austria).
article_processing_charge: Yes (via OA deal)
article_type: original
author:
- first_name: Zaigham
  full_name: Shahzad, Zaigham
  last_name: Shahzad
- first_name: Elizabeth
  full_name: Hollwey, Elizabeth
  id: b8c4f54b-e484-11eb-8fdc-a54df64ef6dd
  last_name: Hollwey
- first_name: Jonathan D.
  full_name: Moore, Jonathan D.
  last_name: Moore
- first_name: Jaemyung
  full_name: Choi, Jaemyung
  last_name: Choi
- first_name: Gaëlle
  full_name: Cassin-Ross, Gaëlle
  last_name: Cassin-Ross
- first_name: Hatem
  full_name: Rouached, Hatem
  last_name: Rouached
- first_name: Matthew Richard
  full_name: Robinson, Matthew Richard
  id: E5D42276-F5DA-11E9-8E24-6303E6697425
  last_name: Robinson
  orcid: 0000-0001-8982-8813
- first_name: Daniel
  full_name: Zilberman, Daniel
  id: 6973db13-dd5f-11ea-814e-b3e5455e9ed1
  last_name: Zilberman
  orcid: 0000-0002-0123-8649
citation:
  ama: Shahzad Z, Hollwey E, Moore JD, et al. Gene body methylation regulates gene
    expression and mediates phenotypic diversity in natural Arabidopsis populations.
    <i>Nature Plants</i>. 2025;11:2084-2099. doi:<a href="https://doi.org/10.1038/s41477-025-02108-4">10.1038/s41477-025-02108-4</a>
  apa: Shahzad, Z., Hollwey, E., Moore, J. D., Choi, J., Cassin-Ross, G., Rouached,
    H., … Zilberman, D. (2025). Gene body methylation regulates gene expression and
    mediates phenotypic diversity in natural Arabidopsis populations. <i>Nature Plants</i>.
    Springer Nature. <a href="https://doi.org/10.1038/s41477-025-02108-4">https://doi.org/10.1038/s41477-025-02108-4</a>
  chicago: Shahzad, Zaigham, Elizabeth Hollwey, Jonathan D. Moore, Jaemyung Choi,
    Gaëlle Cassin-Ross, Hatem Rouached, Matthew Richard Robinson, and Daniel Zilberman.
    “Gene Body Methylation Regulates Gene Expression and Mediates Phenotypic Diversity
    in Natural Arabidopsis Populations.” <i>Nature Plants</i>. Springer Nature, 2025.
    <a href="https://doi.org/10.1038/s41477-025-02108-4">https://doi.org/10.1038/s41477-025-02108-4</a>.
  ieee: Z. Shahzad <i>et al.</i>, “Gene body methylation regulates gene expression
    and mediates phenotypic diversity in natural Arabidopsis populations,” <i>Nature
    Plants</i>, vol. 11. Springer Nature, pp. 2084–2099, 2025.
  ista: Shahzad Z, Hollwey E, Moore JD, Choi J, Cassin-Ross G, Rouached H, Robinson
    MR, Zilberman D. 2025. Gene body methylation regulates gene expression and mediates
    phenotypic diversity in natural Arabidopsis populations. Nature Plants. 11, 2084–2099.
  mla: Shahzad, Zaigham, et al. “Gene Body Methylation Regulates Gene Expression and
    Mediates Phenotypic Diversity in Natural Arabidopsis Populations.” <i>Nature Plants</i>,
    vol. 11, Springer Nature, 2025, pp. 2084–99, doi:<a href="https://doi.org/10.1038/s41477-025-02108-4">10.1038/s41477-025-02108-4</a>.
  short: Z. Shahzad, E. Hollwey, J.D. Moore, J. Choi, G. Cassin-Ross, H. Rouached,
    M.R. Robinson, D. Zilberman, Nature Plants 11 (2025) 2084–2099.
corr_author: '1'
date_created: 2025-10-16T13:11:21Z
date_published: 2025-09-12T00:00:00Z
date_updated: 2025-12-01T14:59:10Z
day: '12'
ddc:
- '580'
department:
- _id: MaRo
- _id: DaZi
doi: 10.1038/s41477-025-02108-4
ec_funded: 1
external_id:
  isi:
  - '001570197600001'
  pmid:
  - '40940427'
file:
- access_level: open_access
  checksum: 6a3f6cffdc934b8a2015c3c247f5a92a
  content_type: application/pdf
  creator: dernst
  date_created: 2025-10-23T11:13:58Z
  date_updated: 2025-10-23T11:13:58Z
  file_id: '20524'
  file_name: 2025_NaturePlants_Shahzad.pdf
  file_size: 7746662
  relation: main_file
  success: 1
file_date_updated: 2025-10-23T11:13:58Z
has_accepted_license: '1'
intvolume: '        11'
isi: 1
language:
- iso: eng
month: '09'
oa: 1
oa_version: Published Version
page: 2084-2099
pmid: 1
project:
- _id: 62935a00-2b32-11ec-9570-eff30fa39068
  call_identifier: H2020
  grant_number: '725746'
  name: Quantitative analysis of DNA methylation maintenance with chromatin
publication: Nature Plants
publication_identifier:
  issn:
  - 2055-0278
publication_status: published
publisher: Springer Nature
quality_controlled: '1'
scopus_import: '1'
status: public
title: Gene body methylation regulates gene expression and mediates phenotypic diversity
  in natural Arabidopsis populations
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 11
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20480'
abstract:
- lang: eng
  text: Recent studies have argued that air temperatures over many mountain glaciers
    are decoupled from their surroundings, leading to a local cooling which could
    slow down melting. Here we use a compilation of on-glacier meteorological observations
    to assess the extent to which this relationship changes under warming. Statistical
    modelling of the potential temperature decoupling of the world’s mountain glaciers
    indicates that currently glacier boundary layers warm ~0.83 °C on average for
    every degree of ambient temperature rise. Future projections under shared socioeconomic
    pathway (SSP) climate scenarios SSP 2-4.5 and SSP 5-8.5 indicate that decoupling,
    and thus relative cooling over glaciers, is maximized during the 2020s and 2030s,
    before widespread glacier retreat acts to recouple above-glacier air temperatures
    with its surroundings. This nonlinear feedback will lead to an increased sensitivity
    to warming from midcentury, with glaciers losing their capacity to affect the
    local climate and cool themselves.
acknowledgement: This work was funded by the EU Horizon 2020 Marie Skłodowska-Curie
  Actions grant 101026058. T.E.S. also acknowledges funding from the EU Horizon 2020
  Marie Skłodowska-Curie grant agreement no. 101034413. We acknowledge funding from
  the European Research Council under the European Union’s Horizon 2020 research and
  innovation programme grant agreement no. 772751, RAVEN, ‘Rapid mass losses of debris-covered
  glaciers in High Mountain Asia’ and from the Swiss National Science Foundation (ASCENT
  Project 189890). L.C. carried out work within the RETURN Extended Partnership and
  received funding from the European Union Next-Generation EU (National Recovery and
  Resilience Plan—NRRP, Mission 4, Component 2, Investment 1.3—D.D. 1243 2/8/2022,
  PE0000005). We acknowledge the dedicated collection of field data and the kind provision
  of data from many weather stations around the world (details, references and acknowledgements
  in Supplementary Table 1). Open access funding provided by Institute of Science
  and Technology (IST Austria).
article_processing_charge: Yes (via OA deal)
article_type: original
author:
- first_name: Thomas
  full_name: Shaw, Thomas
  id: 3caa3f91-1f03-11ee-96ce-e0e553054d6e
  last_name: Shaw
  orcid: 0000-0001-7640-6152
- first_name: Evan S.
  full_name: Miles, Evan S.
  last_name: Miles
- first_name: Michael
  full_name: McCarthy, Michael
  id: 22a2674a-61ce-11ee-94b5-d18813baf16f
  last_name: McCarthy
- first_name: Pascal
  full_name: Buri, Pascal
  last_name: Buri
- first_name: Nicolas
  full_name: Guyennon, Nicolas
  last_name: Guyennon
- first_name: Franco
  full_name: Salerno, Franco
  last_name: Salerno
- first_name: Luca
  full_name: Carturan, Luca
  last_name: Carturan
- first_name: Benjamin
  full_name: Brock, Benjamin
  last_name: Brock
- first_name: Francesca
  full_name: Pellicciotti, Francesca
  id: b28f055a-81ea-11ed-b70c-a9fe7f7b0e70
  last_name: Pellicciotti
  orcid: 0000-0002-5554-8087
citation:
  ama: Shaw T, Miles ES, McCarthy M, et al. Mountain glaciers recouple to atmospheric
    warming over the twenty-first century. <i>Nature Climate Change</i>. 2025;15:1212-1218.
    doi:<a href="https://doi.org/10.1038/s41558-025-02449-0">10.1038/s41558-025-02449-0</a>
  apa: Shaw, T., Miles, E. S., McCarthy, M., Buri, P., Guyennon, N., Salerno, F.,
    … Pellicciotti, F. (2025). Mountain glaciers recouple to atmospheric warming over
    the twenty-first century. <i>Nature Climate Change</i>. Springer Nature. <a href="https://doi.org/10.1038/s41558-025-02449-0">https://doi.org/10.1038/s41558-025-02449-0</a>
  chicago: Shaw, Thomas, Evan S. Miles, Michael McCarthy, Pascal Buri, Nicolas Guyennon,
    Franco Salerno, Luca Carturan, Benjamin Brock, and Francesca Pellicciotti. “Mountain
    Glaciers Recouple to Atmospheric Warming over the Twenty-First Century.” <i>Nature
    Climate Change</i>. Springer Nature, 2025. <a href="https://doi.org/10.1038/s41558-025-02449-0">https://doi.org/10.1038/s41558-025-02449-0</a>.
  ieee: T. Shaw <i>et al.</i>, “Mountain glaciers recouple to atmospheric warming
    over the twenty-first century,” <i>Nature Climate Change</i>, vol. 15. Springer
    Nature, pp. 1212–1218, 2025.
  ista: Shaw T, Miles ES, McCarthy M, Buri P, Guyennon N, Salerno F, Carturan L, Brock
    B, Pellicciotti F. 2025. Mountain glaciers recouple to atmospheric warming over
    the twenty-first century. Nature Climate Change. 15, 1212–1218.
  mla: Shaw, Thomas, et al. “Mountain Glaciers Recouple to Atmospheric Warming over
    the Twenty-First Century.” <i>Nature Climate Change</i>, vol. 15, Springer Nature,
    2025, pp. 1212–18, doi:<a href="https://doi.org/10.1038/s41558-025-02449-0">10.1038/s41558-025-02449-0</a>.
  short: T. Shaw, E.S. Miles, M. McCarthy, P. Buri, N. Guyennon, F. Salerno, L. Carturan,
    B. Brock, F. Pellicciotti, Nature Climate Change 15 (2025) 1212–1218.
corr_author: '1'
date_created: 2025-10-16T13:12:49Z
date_published: 2025-11-01T00:00:00Z
date_updated: 2026-01-05T13:36:23Z
day: '01'
ddc:
- '550'
department:
- _id: FrPe
doi: 10.1038/s41558-025-02449-0
ec_funded: 1
external_id:
  isi:
  - '001591762900001'
file:
- access_level: open_access
  checksum: 2d79c3fa263999a9f921496430b101e3
  content_type: application/pdf
  creator: dernst
  date_created: 2026-01-05T13:36:14Z
  date_updated: 2026-01-05T13:36:14Z
  file_id: '20955'
  file_name: 2025_NatureClimateChange_Shaw.pdf
  file_size: 2985402
  relation: main_file
  success: 1
file_date_updated: 2026-01-05T13:36:14Z
has_accepted_license: '1'
intvolume: '        15'
isi: 1
language:
- iso: eng
month: '11'
oa: 1
oa_version: Published Version
page: 1212-1218
project:
- _id: fc2ed2f7-9c52-11eb-aca3-c01059dda49c
  call_identifier: H2020
  grant_number: '101034413'
  name: 'IST-BRIDGE: International postdoctoral program'
publication: Nature Climate Change
publication_identifier:
  eissn:
  - 1758-6798
  issn:
  - 1758-678X
publication_status: published
publisher: Springer Nature
quality_controlled: '1'
status: public
title: Mountain glaciers recouple to atmospheric warming over the twenty-first century
tmp:
  image: /images/cc_by.png
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  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 15
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20483'
abstract:
- lang: eng
  text: A parallel plate capacitor containing an electrolytic solution is the simplest
    model of a supercapacitor or electric double-layer capacitor. Using both analytical
    and numerical techniques, we solve the Poisson-Nernst-Planck equations for such
    a system, describing the mean-field charging dynamics of the capacitor, when a
    constant potential difference is abruptly applied to its plates. Working at constant
    total number of ions, we focus on the physical processes involved in the relaxation
    and, whenever possible, give its functional shape and exact time constants. We
    first review and study the case of a symmetric binary electrolyte, where we assume
    the two ionic species to have the same charges and diffusivities. We then relax
    these assumptions and present results for a generic strong (i.e fully dissociated)
    binary electrolyte. At low electrolyte concentration, the relaxation is simple
    to understand, as the dynamics of positive and negative ions appear decoupled.
    At higher electrolyte concentration, we distinguish several regimes. In the linear
    regime (low voltages), relaxation is multiexponential, it starts by the buildup
    of the equilibrium charge profile and continues with neutral mass diffusion, and
    the relevant timescales feature both the average and the Nernst-Hartley diffusion
    coefficients. In the purely nonlinear regime (intermediate voltages), the initial
    relaxation is slowed down exponentially due to increased capacitance, while bulk
    effects become more and more evident. In the fully nonlinear regime (high voltages),
    the dynamics of charge and mass are completely entangled and, asymptotically,
    the relaxation is linear in time. We finally discuss nonideal behavior in real
    capacitors and provide conditions for which mean-field is expected to hold.
acknowledgement: This work has received funding from the European Union's Horizon
  2020 and Horizon Europe research and innovation programs under the Marie Skłodowska-Curie
  Grants No. 674979-NANOTRANS (I.P., P.B.W., B.R., and E.T.), No. 101034413 (I.P.),
  and No. 101119598-FLUXIONIC (M.D., B.R., and E.T.), as well as from the European
  Research Council under Grant No. 863473 (B.R.). B.R. acknowledges financial support
  from the French Agence Nationale de la Recherche (ANR) under Grant No. ANR-21-CE29-0021-02
  (DIADEM). I.P. thanks Anđela Šarić for further support at ISTA.
article_number: '035417'
article_processing_charge: Yes (via OA deal)
article_type: original
arxiv: 1
author:
- first_name: Ivan
  full_name: Palaia, Ivan
  id: 9c805cd2-4b75-11ec-a374-db6dd0ed57fa
  last_name: Palaia
  orcid: ' 0000-0002-8843-9485 '
- first_name: Adelchi J.
  full_name: Asta, Adelchi J.
  last_name: Asta
- first_name: Megh
  full_name: Dutta, Megh
  last_name: Dutta
- first_name: Patrick B.
  full_name: Warren, Patrick B.
  last_name: Warren
- first_name: Benjamin
  full_name: Rotenberg, Benjamin
  last_name: Rotenberg
- first_name: Emmanuel
  full_name: Trizac, Emmanuel
  last_name: Trizac
citation:
  ama: 'Palaia I, Asta AJ, Dutta M, Warren PB, Rotenberg B, Trizac E. Poisson-Nernst-Planck
    charging dynamics of an electric double-layer capacitor: Symmetric and asymmetric
    binary electrolytes. <i>Physical Review E</i>. 2025;112(3). doi:<a href="https://doi.org/10.1103/p4dg-snqf">10.1103/p4dg-snqf</a>'
  apa: 'Palaia, I., Asta, A. J., Dutta, M., Warren, P. B., Rotenberg, B., &#38; Trizac,
    E. (2025). Poisson-Nernst-Planck charging dynamics of an electric double-layer
    capacitor: Symmetric and asymmetric binary electrolytes. <i>Physical Review E</i>.
    American Physical Society. <a href="https://doi.org/10.1103/p4dg-snqf">https://doi.org/10.1103/p4dg-snqf</a>'
  chicago: 'Palaia, Ivan, Adelchi J. Asta, Megh Dutta, Patrick B. Warren, Benjamin
    Rotenberg, and Emmanuel Trizac. “Poisson-Nernst-Planck Charging Dynamics of an
    Electric Double-Layer Capacitor: Symmetric and Asymmetric Binary Electrolytes.”
    <i>Physical Review E</i>. American Physical Society, 2025. <a href="https://doi.org/10.1103/p4dg-snqf">https://doi.org/10.1103/p4dg-snqf</a>.'
  ieee: 'I. Palaia, A. J. Asta, M. Dutta, P. B. Warren, B. Rotenberg, and E. Trizac,
    “Poisson-Nernst-Planck charging dynamics of an electric double-layer capacitor:
    Symmetric and asymmetric binary electrolytes,” <i>Physical Review E</i>, vol.
    112, no. 3. American Physical Society, 2025.'
  ista: 'Palaia I, Asta AJ, Dutta M, Warren PB, Rotenberg B, Trizac E. 2025. Poisson-Nernst-Planck
    charging dynamics of an electric double-layer capacitor: Symmetric and asymmetric
    binary electrolytes. Physical Review E. 112(3), 035417.'
  mla: 'Palaia, Ivan, et al. “Poisson-Nernst-Planck Charging Dynamics of an Electric
    Double-Layer Capacitor: Symmetric and Asymmetric Binary Electrolytes.” <i>Physical
    Review E</i>, vol. 112, no. 3, 035417, American Physical Society, 2025, doi:<a
    href="https://doi.org/10.1103/p4dg-snqf">10.1103/p4dg-snqf</a>.'
  short: I. Palaia, A.J. Asta, M. Dutta, P.B. Warren, B. Rotenberg, E. Trizac, Physical
    Review E 112 (2025).
corr_author: '1'
date_created: 2025-10-16T13:15:16Z
date_published: 2025-09-29T00:00:00Z
date_updated: 2025-12-01T13:06:51Z
day: '29'
ddc:
- '530'
department:
- _id: AnSa
doi: 10.1103/p4dg-snqf
ec_funded: 1
external_id:
  arxiv:
  - '2303.07859'
  isi:
  - '001586173200001'
file:
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file_date_updated: 2025-10-23T09:15:56Z
has_accepted_license: '1'
intvolume: '       112'
isi: 1
issue: '3'
language:
- iso: eng
month: '09'
oa: 1
oa_version: Published Version
project:
- _id: fc2ed2f7-9c52-11eb-aca3-c01059dda49c
  call_identifier: H2020
  grant_number: '101034413'
  name: 'IST-BRIDGE: International postdoctoral program'
publication: Physical Review E
publication_identifier:
  eissn:
  - 2470-0053
  issn:
  - 2470-0045
publication_status: published
publisher: American Physical Society
quality_controlled: '1'
scopus_import: '1'
status: public
title: 'Poisson-Nernst-Planck charging dynamics of an electric double-layer capacitor:
  Symmetric and asymmetric binary electrolytes'
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 112
year: '2025'
...
---
OA_place: publisher
_id: '20485'
acknowledged_ssus:
- _id: LifeSc
- _id: Bio
acknowledgement: "I would also like to acknowledge the funding that I received from
  the European Union’s\r\nHorizon 2020 research and Innovation programme under the
  Marie Sklodowska-Curie\r\nGrant Agreement No. 665385. This work would not have been
  possible without the contribution and support of people\r\nbehind the scientific
  service units at ISTA: the Life Science Facility (LSF), Imaging and\r\nOptics Facility
  (IOF), the Bioinformatics Unit, Protein Services Unit and\r\nElectrophysiology Unit.
  I would also like to recognize the work of people at the Vienna\r\nBiocenter (VBC)
  Mass Spectrometry Facility, particularly Markus Hartl and WeiQiang\r\nChen. "
alternative_title:
- ISTA Thesis
article_processing_charge: No
author:
- first_name: Michaela
  full_name: Misova, Michaela
  id: 495A3C32-F248-11E8-B48F-1D18A9856A87
  last_name: Misova
  orcid: 0000-0003-2427-6856
citation:
  ama: Misova M. Dissecting gap junction biology using the C. elegans nervous system.
    2025. doi:<a href="https://doi.org/10.15479/AT-ISTA-20485">10.15479/AT-ISTA-20485</a>
  apa: Misova, M. (2025). <i>Dissecting gap junction biology using the C. elegans
    nervous system</i>. Institute of Science and Technology Austria. <a href="https://doi.org/10.15479/AT-ISTA-20485">https://doi.org/10.15479/AT-ISTA-20485</a>
  chicago: Misova, Michaela. “Dissecting Gap Junction Biology Using the C. Elegans
    Nervous System.” Institute of Science and Technology Austria, 2025. <a href="https://doi.org/10.15479/AT-ISTA-20485">https://doi.org/10.15479/AT-ISTA-20485</a>.
  ieee: M. Misova, “Dissecting gap junction biology using the C. elegans nervous system,”
    Institute of Science and Technology Austria, 2025.
  ista: Misova M. 2025. Dissecting gap junction biology using the C. elegans nervous
    system. Institute of Science and Technology Austria.
  mla: Misova, Michaela. <i>Dissecting Gap Junction Biology Using the C. Elegans Nervous
    System</i>. Institute of Science and Technology Austria, 2025, doi:<a href="https://doi.org/10.15479/AT-ISTA-20485">10.15479/AT-ISTA-20485</a>.
  short: M. Misova, Dissecting Gap Junction Biology Using the C. Elegans Nervous System,
    Institute of Science and Technology Austria, 2025.
corr_author: '1'
date_created: 2025-10-17T16:15:09Z
date_published: 2025-10-23T00:00:00Z
date_updated: 2026-04-07T11:54:00Z
day: '23'
ddc:
- '570'
degree_awarded: PhD
department:
- _id: GradSch
- _id: MaDe
doi: 10.15479/AT-ISTA-20485
ec_funded: 1
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file_date_updated: 2025-11-06T11:08:06Z
has_accepted_license: '1'
language:
- iso: eng
month: '10'
oa_version: Published Version
page: '155'
project:
- _id: 2564DBCA-B435-11E9-9278-68D0E5697425
  call_identifier: H2020
  grant_number: '665385'
  name: International IST Doctoral Program
publication_identifier:
  isbn:
  - 978-3-99078-068-8
  issn:
  - 2663-337X
publication_status: published
publisher: Institute of Science and Technology Austria
status: public
supervisor:
- first_name: Mario
  full_name: de Bono, Mario
  id: 4E3FF80E-F248-11E8-B48F-1D18A9856A87
  last_name: de Bono
  orcid: 0000-0001-8347-0443
title: Dissecting gap junction biology using the C. elegans nervous system
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: dissertation
user_id: ba8df636-2132-11f1-aed0-ed93e2281fdd
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20491'
abstract:
- lang: eng
  text: Global fibre production has expanded rapidly, with polyester and cotton dominating,
    significantly contributing to textile waste and increasing demand for sustainable
    solutions. This study presents innovative method to recycle polyester/cotton (PET/CO)
    blends using hydrophobic deep eutectic solvents (DESs), eliminating the need for
    toxic chemicals while achieving high dissolution yields. PET was completely dissolved
    within 5 min, substantially outperforming state-of-the-art methods and facilitating
    the efficient and selective recovery of both components, PET (97%) and CO (100%).
    SEM imaging confirmed no morphological changes in cotton fibres after treatment.
    The thermal stability of the recovered materials was validated using DSC and TGA
    analyses, while ATR-FTIR spectroscopy indicated no chemical changes. Mechanical
    testing confirmed recovered cotton’s tenacity and elongation are within expected
    ranges despite showing a decrease of 28% in tenacity and 34% in elongation. Hence,
    the proposed process provides an efficient and sustainable recycling solution
    for PET/CO blends, retaining both polymers in a condition similar to virgin materials
    used in textile manufacturing with minimal processing time.
acknowledgement: "This study was conducted at the Josef Ressel Centre for Recovery
  Strategies of Textiles which is funded by the Christian Doppler Research Society
  on behalf of the Austrian Federal Ministry of Labor and Economic Affairs and the
  National Foundation for Research, Technology. The authors acknowledge “Open Access
  Funding by TU Wien” for financial support through its Open Access Funding Program.\r\nSpecial
  thanks are extended to EREMA Group GmbH, SALESIANER MIETTEX GmbH and Starlinger
  & Co GmbH for their material support and valuable input throughout the development
  of this study."
article_number: '115177'
article_processing_charge: Yes (via OA deal)
article_type: original
author:
- first_name: Nika
  full_name: Depope, Nika
  last_name: Depope
- first_name: Al
  full_name: Depope, Al
  id: 0b77531d-dbcd-11ea-9d1d-a8eee0bf3830
  last_name: Depope
- first_name: Vasiliki Maria
  full_name: Archodoulaki, Vasiliki Maria
  last_name: Archodoulaki
- first_name: Wolfgang
  full_name: Ipsmiller, Wolfgang
  last_name: Ipsmiller
- first_name: Andreas
  full_name: Bartl, Andreas
  last_name: Bartl
citation:
  ama: Depope N, Depope A, Archodoulaki VM, Ipsmiller W, Bartl A. Deep eutectic solvent
    as a solution for polyester/cotton textile recycling. <i>Waste Management</i>.
    2025;208. doi:<a href="https://doi.org/10.1016/j.wasman.2025.115177">10.1016/j.wasman.2025.115177</a>
  apa: Depope, N., Depope, A., Archodoulaki, V. M., Ipsmiller, W., &#38; Bartl, A.
    (2025). Deep eutectic solvent as a solution for polyester/cotton textile recycling.
    <i>Waste Management</i>. Elsevier. <a href="https://doi.org/10.1016/j.wasman.2025.115177">https://doi.org/10.1016/j.wasman.2025.115177</a>
  chicago: Depope, Nika, Al Depope, Vasiliki Maria Archodoulaki, Wolfgang Ipsmiller,
    and Andreas Bartl. “Deep Eutectic Solvent as a Solution for Polyester/Cotton Textile
    Recycling.” <i>Waste Management</i>. Elsevier, 2025. <a href="https://doi.org/10.1016/j.wasman.2025.115177">https://doi.org/10.1016/j.wasman.2025.115177</a>.
  ieee: N. Depope, A. Depope, V. M. Archodoulaki, W. Ipsmiller, and A. Bartl, “Deep
    eutectic solvent as a solution for polyester/cotton textile recycling,” <i>Waste
    Management</i>, vol. 208. Elsevier, 2025.
  ista: Depope N, Depope A, Archodoulaki VM, Ipsmiller W, Bartl A. 2025. Deep eutectic
    solvent as a solution for polyester/cotton textile recycling. Waste Management.
    208, 115177.
  mla: Depope, Nika, et al. “Deep Eutectic Solvent as a Solution for Polyester/Cotton
    Textile Recycling.” <i>Waste Management</i>, vol. 208, 115177, Elsevier, 2025,
    doi:<a href="https://doi.org/10.1016/j.wasman.2025.115177">10.1016/j.wasman.2025.115177</a>.
  short: N. Depope, A. Depope, V.M. Archodoulaki, W. Ipsmiller, A. Bartl, Waste Management
    208 (2025).
date_created: 2025-10-19T22:01:31Z
date_published: 2025-11-01T00:00:00Z
date_updated: 2025-12-01T12:58:17Z
day: '01'
ddc:
- '572'
department:
- _id: MaRo
doi: 10.1016/j.wasman.2025.115177
external_id:
  isi:
  - '001594629200003'
  pmid:
  - '41066876'
file:
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  date_created: 2025-10-20T10:57:36Z
  date_updated: 2025-10-20T10:57:36Z
  file_id: '20501'
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  file_size: 4511527
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  success: 1
file_date_updated: 2025-10-20T10:57:36Z
has_accepted_license: '1'
intvolume: '       208'
isi: 1
language:
- iso: eng
month: '11'
oa: 1
oa_version: Published Version
pmid: 1
publication: Waste Management
publication_identifier:
  eissn:
  - 1879-2456
  issn:
  - 0956-053X
publication_status: published
publisher: Elsevier
quality_controlled: '1'
scopus_import: '1'
status: public
title: Deep eutectic solvent as a solution for polyester/cotton textile recycling
tmp:
  image: /images/cc_by.png
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  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 208
year: '2025'
...
---
DOAJ_listed: '1'
OA_place: publisher
OA_type: gold
PlanS_conform: '1'
_id: '20493'
abstract:
- lang: eng
  text: 'We propose a formation pathway linking black holes (BHs) observed in gravitational-wave
    (GW) mergers, wide BH–stellar systems uncovered by Gaia, and accreting low-mass
    X-ray binaries (LMXBs). In this scenario, a stellar-mass BH binary undergoes isolated
    binary evolution and merges while hosting a distant, dynamically unimportant tertiary
    stellar companion. The tertiary becomes relevant only after the merger, when the
    remnant BH receives a GW recoil kick. Depending on the kick velocity and system
    configuration, the outcome can be: (1) a bright electromagnetic (EM) counterpart
    to the GW merger; (2) an LMXB; (3) a wide BH–stellar companion system resembling
    the Gaia BH population; or (4) an unbound isolated BH. Modeling the three-body
    dynamics, we find that ∼0.02% of LIGO–Virgo–KAGRA (LVK) mergers may be followed
    by an EM counterpart within ∼10 days, produced by tidal disruption of the star
    by the BH. The flare is likely brightest in the optical–UV and lasts for days
    to weeks; in some cases, partial disruption causes recurring flares with a period
    of ∼2 months. We further estimate that this channel can produce ∼1%–10% of Gaia
    BH systems in the Milky Way. This scenario provides the first physically motivated
    link between GW sources, Gaia BHs, and some X-ray binaries, and predicts a rare
    but robust pathway for EM counterparts to binary BH mergers, potentially detectable
    in LVK’s O5 run.'
acknowledgement: We thank the anonymous referee for the useful and detailed report.
  S.N. acknowledges the partial support of NSF-BSF grant AST-2206428 and NASA XRP
  grant 80NSSC23K0262, as well as Howard and Astrid Preston for their generous support.
  Z.H. acknowledges support from NASA grants 80NSSC22K0822 and 80NSSC24K0440. E.Q.
  thanks the Gordon and Betty Moore Foundation for support through grant GBMF5076.
article_number: L12
article_processing_charge: Yes
article_type: original
arxiv: 1
author:
- first_name: Smadar
  full_name: Naoz, Smadar
  last_name: Naoz
- first_name: Zoltán
  full_name: Haiman, Zoltán
  id: 7c006e8c-cc0d-11ee-8322-cb904ef76f36
  last_name: Haiman
  orcid: 0000-0003-3633-5403
- first_name: Eliot
  full_name: Quataert, Eliot
  last_name: Quataert
- first_name: Liz
  full_name: Holzknecht, Liz
  last_name: Holzknecht
citation:
  ama: Naoz S, Haiman Z, Quataert E, Holzknecht L. Triples as links between binary
    Black Hole mergers, their electromagnetic counterparts, and galactic Black Holes.
    <i>The Astrophysical Journal Letters</i>. 2025;992(1). doi:<a href="https://doi.org/10.3847/2041-8213/ae0a20">10.3847/2041-8213/ae0a20</a>
  apa: Naoz, S., Haiman, Z., Quataert, E., &#38; Holzknecht, L. (2025). Triples as
    links between binary Black Hole mergers, their electromagnetic counterparts, and
    galactic Black Holes. <i>The Astrophysical Journal Letters</i>. IOP Publishing.
    <a href="https://doi.org/10.3847/2041-8213/ae0a20">https://doi.org/10.3847/2041-8213/ae0a20</a>
  chicago: Naoz, Smadar, Zoltán Haiman, Eliot Quataert, and Liz Holzknecht. “Triples
    as Links between Binary Black Hole Mergers, Their Electromagnetic Counterparts,
    and Galactic Black Holes.” <i>The Astrophysical Journal Letters</i>. IOP Publishing,
    2025. <a href="https://doi.org/10.3847/2041-8213/ae0a20">https://doi.org/10.3847/2041-8213/ae0a20</a>.
  ieee: S. Naoz, Z. Haiman, E. Quataert, and L. Holzknecht, “Triples as links between
    binary Black Hole mergers, their electromagnetic counterparts, and galactic Black
    Holes,” <i>The Astrophysical Journal Letters</i>, vol. 992, no. 1. IOP Publishing,
    2025.
  ista: Naoz S, Haiman Z, Quataert E, Holzknecht L. 2025. Triples as links between
    binary Black Hole mergers, their electromagnetic counterparts, and galactic Black
    Holes. The Astrophysical Journal Letters. 992(1), L12.
  mla: Naoz, Smadar, et al. “Triples as Links between Binary Black Hole Mergers, Their
    Electromagnetic Counterparts, and Galactic Black Holes.” <i>The Astrophysical
    Journal Letters</i>, vol. 992, no. 1, L12, IOP Publishing, 2025, doi:<a href="https://doi.org/10.3847/2041-8213/ae0a20">10.3847/2041-8213/ae0a20</a>.
  short: S. Naoz, Z. Haiman, E. Quataert, L. Holzknecht, The Astrophysical Journal
    Letters 992 (2025).
date_created: 2025-10-19T22:01:31Z
date_published: 2025-10-10T00:00:00Z
date_updated: 2026-02-16T12:44:56Z
day: '10'
ddc:
- '520'
department:
- _id: ZoHa
doi: 10.3847/2041-8213/ae0a20
external_id:
  arxiv:
  - '2508.13270'
  isi:
  - '001589455900001'
file:
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file_date_updated: 2025-10-23T09:09:30Z
has_accepted_license: '1'
intvolume: '       992'
isi: 1
issue: '1'
language:
- iso: eng
month: '10'
oa: 1
oa_version: Published Version
publication: The Astrophysical Journal Letters
publication_identifier:
  eissn:
  - 2041-8213
  issn:
  - 2041-8205
publication_status: published
publisher: IOP Publishing
quality_controlled: '1'
scopus_import: '1'
status: public
title: Triples as links between binary Black Hole mergers, their electromagnetic counterparts,
  and galactic Black Holes
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 992
year: '2025'
...
---
OA_place: publisher
OA_type: diamond
PlanS_conform: '1'
_id: '20494'
abstract:
- lang: eng
  text: The James Webb Space Telescope is revolutionising our ability to understand
    the host galaxies and local environments of high-z quasars. Here we obtain a comprehensive
    understanding of the host galaxy of the z = 7.08 quasar J1120+0641 by combining
    NIRSpec integral field spectroscopy with NIRCam photometry of the host continuum
    emission. Our emission-line maps reveal that this quasar host is undergoing a
    merger with a bright companion galaxy. The quasar host and the companion have
    similar dynamical masses of ∼1010 M⊙, suggesting that this is a major galaxy interaction.
    Through detailed quasar subtraction and SED fitting using the NIRCam data, we
    obtained an estimate of the host stellar mass of M* = (3.0−1.4+2.5) × 109 M⊙,
    with M∗ = (2.7−0.5+0.5) × 109 M⊙ for the companion galaxy. Using the Hβ Balmer
    line, we estimated a virial black hole mass of MBH = (1.9−1.1+2.9) × 109 M⊙. Thus,
    J1120+0641 has an extreme black hole–stellar mass ratio of MBH/M* = 0.63−0.31+0.54,
    which is ∼3 dex larger than expected by the local scaling relations between black
    hole and stellar mass. J1120+0641 is powered by an overmassive black hole with
    the highest reported black hole–stellar mass ratio in a quasar host that is currently
    undergoing a major merger. These new insights highlight the power of JWST for
    measuring and understanding these extreme first quasars.
acknowledgement: 'This work is based on observations made with the NASA/ESA/CSA James
  Webb Space Telescope. The data were obtained from the Mikulski Archive for Space
  Telescopes at the Space Telescope Science Institute, which is operated by the Association
  of Universities for Research in Astronomy, Inc., under NASA contract NAS 5-03127
  for JWST. These observations are associated with program #1263, as part of the Galaxy
  Assembly with NIRSpec Integral Field Spectroscopy GTO program, and program #1243,
  as part of the Emission-line galaxies and Intergalactic Gas in the Epoch of Reionization
  GTO program. We thank Ignas Juodžbalis for helping with the compilation of BH–stellar
  mass measurements from the literature. We thank the referee for their helpful feedback.
  MAM acknowledges support by the Laboratory Directed Research and Development program
  of Los Alamos National Laboratory under project number 20240752PRD1. The project
  leading to this publication has received support from ORP, that is funded by the
  European Union’s Horizon 2020 research and innovation programme under grant agreement
  No 101004719 [ORP]. MP, SA and BRdP acknowledge grant PID2021-127718NB-I00 funded
  by the Spanish Ministry of Science and Innovation/State Agency of Research (MICIN/AEI/
  10.13039/501100011033). JS, RM and FDE acknowledge support by the Science and Technology
  Facilities Council (STFC), from the ERC Advanced Grant 695671 “QUENCH”. JS and FDE
  acknowledge the UKRI Frontier Research grant RISEandFALL. RM acknowledges funding
  from a research professorship from the Royal Society. HÜ acknowledges funding by
  the European Union (ERC APEX, 101164796). Views and opinions expressed are however
  those of the authors only and do not necessarily reflect those of the European Union
  or the European Research Council Executive Agency. Neither the European Union nor
  the granting authority can be held responsible for them. SC and GV acknowledge support
  from the European Union (ERC, WINGS,101040227). AJB and GCJ acknowledge funding
  from the “FirstGalaxies” Advanced Grant from the European Research Council (ERC)
  under the European Union’s Horizon 2020 research and innovation programme (Grant
  agreement No. 789056). DK acknowledges funding from JSPS KAKENHI Grant Number JP21K13956.
  This research has made use of the Astrophysics Data System, funded by NASA under
  Cooperative Agreement 80NSSC21M00561, QFitsView (Ott 2012), and SAOImageDS9, developed
  by Smithsonian Astrophysical Observatory. This paper made use of Python packages
  and software AstroPy (Astropy Collaboration 2013), jwst (Bushouse et al. 2022),
  Matplotlib (Hunter 2007), NumPy (van der Walt et al. 2011), Pandas (Pandas Development
  Team 2020), Photutils (Bradley et al. 2018), Prospector (Johnson et al. 2021), psfMC
  (Mechtley 2019), Regions (Bradley et al. 2022), SciPy (Virtanen et al. 2020), Seaborn
  (Waskom 2021), Spectral Cube (Ginsburg et al. 2019), QDeblend3D (Husemann et al.
  2013, 2014), QubeSpec (https://github.com/honzascholtz/Qubespec), and WebbPSF (Perrin
  et al. 2015).'
article_number: A50
article_processing_charge: No
article_type: original
arxiv: 1
author:
- first_name: Madeline A.
  full_name: Marshall, Madeline A.
  last_name: Marshall
- first_name: Minghao
  full_name: Yue, Minghao
  last_name: Yue
- first_name: Anna Christina
  full_name: Eilers, Anna Christina
  last_name: Eilers
- first_name: Jan
  full_name: Scholtz, Jan
  last_name: Scholtz
- first_name: Michele
  full_name: Perna, Michele
  last_name: Perna
- first_name: Chris J.
  full_name: Willott, Chris J.
  last_name: Willott
- first_name: Roberto
  full_name: Maiolino, Roberto
  last_name: Maiolino
- first_name: Hannah
  full_name: Übler, Hannah
  last_name: Übler
- first_name: Santiago
  full_name: Arribas, Santiago
  last_name: Arribas
- first_name: Andrew J.
  full_name: Bunker, Andrew J.
  last_name: Bunker
- first_name: Stephane
  full_name: Charlot, Stephane
  last_name: Charlot
- first_name: Bruno
  full_name: Rodríguez Del Pino, Bruno
  last_name: Rodríguez Del Pino
- first_name: Torsten
  full_name: Böker, Torsten
  last_name: Böker
- first_name: Stefano
  full_name: Carniani, Stefano
  last_name: Carniani
- first_name: Chiara
  full_name: Circosta, Chiara
  last_name: Circosta
- first_name: Giovanni
  full_name: Cresci, Giovanni
  last_name: Cresci
- first_name: Francesco
  full_name: D'Eugenio, Francesco
  last_name: D'Eugenio
- first_name: Gareth C.
  full_name: Jones, Gareth C.
  last_name: Jones
- first_name: Giacomo
  full_name: Venturi, Giacomo
  last_name: Venturi
- first_name: Rongmon
  full_name: Bordoloi, Rongmon
  last_name: Bordoloi
- first_name: Daichi
  full_name: Kashino, Daichi
  last_name: Kashino
- first_name: Ruari
  full_name: Mackenzie, Ruari
  last_name: Mackenzie
- first_name: Jorryt J
  full_name: Matthee, Jorryt J
  id: 7439a258-f3c0-11ec-9501-9df22fe06720
  last_name: Matthee
  orcid: 0000-0003-2871-127X
- first_name: Rohan
  full_name: Naidu, Rohan
  last_name: Naidu
- first_name: Robert A.
  full_name: Simcoe, Robert A.
  last_name: Simcoe
citation:
  ama: 'Marshall MA, Yue M, Eilers AC, et al. GA-NIFS and EIGER: A merging quasar
    host at z = 7 with an overmassive black hole. <i>Astronomy &#38; Astrophysics</i>.
    2025;702. doi:<a href="https://doi.org/10.1051/0004-6361/202452650">10.1051/0004-6361/202452650</a>'
  apa: 'Marshall, M. A., Yue, M., Eilers, A. C., Scholtz, J., Perna, M., Willott,
    C. J., … Simcoe, R. A. (2025). GA-NIFS and EIGER: A merging quasar host at z =
    7 with an overmassive black hole. <i>Astronomy &#38; Astrophysics</i>. EDP Sciences.
    <a href="https://doi.org/10.1051/0004-6361/202452650">https://doi.org/10.1051/0004-6361/202452650</a>'
  chicago: 'Marshall, Madeline A., Minghao Yue, Anna Christina Eilers, Jan Scholtz,
    Michele Perna, Chris J. Willott, Roberto Maiolino, et al. “GA-NIFS and EIGER:
    A Merging Quasar Host at z = 7 with an Overmassive Black Hole.” <i>Astronomy &#38;
    Astrophysics</i>. EDP Sciences, 2025. <a href="https://doi.org/10.1051/0004-6361/202452650">https://doi.org/10.1051/0004-6361/202452650</a>.'
  ieee: 'M. A. Marshall <i>et al.</i>, “GA-NIFS and EIGER: A merging quasar host at
    z = 7 with an overmassive black hole,” <i>Astronomy &#38; Astrophysics</i>, vol.
    702. EDP Sciences, 2025.'
  ista: 'Marshall MA, Yue M, Eilers AC, Scholtz J, Perna M, Willott CJ, Maiolino R,
    Übler H, Arribas S, Bunker AJ, Charlot S, Rodríguez Del Pino B, Böker T, Carniani
    S, Circosta C, Cresci G, D’Eugenio F, Jones GC, Venturi G, Bordoloi R, Kashino
    D, Mackenzie R, Matthee JJ, Naidu R, Simcoe RA. 2025. GA-NIFS and EIGER: A merging
    quasar host at z = 7 with an overmassive black hole. Astronomy &#38; Astrophysics.
    702, A50.'
  mla: 'Marshall, Madeline A., et al. “GA-NIFS and EIGER: A Merging Quasar Host at
    z = 7 with an Overmassive Black Hole.” <i>Astronomy &#38; Astrophysics</i>, vol.
    702, A50, EDP Sciences, 2025, doi:<a href="https://doi.org/10.1051/0004-6361/202452650">10.1051/0004-6361/202452650</a>.'
  short: M.A. Marshall, M. Yue, A.C. Eilers, J. Scholtz, M. Perna, C.J. Willott, R.
    Maiolino, H. Übler, S. Arribas, A.J. Bunker, S. Charlot, B. Rodríguez Del Pino,
    T. Böker, S. Carniani, C. Circosta, G. Cresci, F. D’Eugenio, G.C. Jones, G. Venturi,
    R. Bordoloi, D. Kashino, R. Mackenzie, J.J. Matthee, R. Naidu, R.A. Simcoe, Astronomy
    &#38; Astrophysics 702 (2025).
date_created: 2025-10-19T22:01:32Z
date_published: 2025-10-01T00:00:00Z
date_updated: 2026-02-16T12:13:28Z
day: '01'
ddc:
- '520'
department:
- _id: JoMa
doi: 10.1051/0004-6361/202452650
external_id:
  arxiv:
  - '2410.11035'
  isi:
  - '001588901100004'
file:
- access_level: open_access
  checksum: ae625d3ebda7483bd61ecb3c497d0de9
  content_type: application/pdf
  creator: dernst
  date_created: 2025-10-20T07:42:18Z
  date_updated: 2025-10-20T07:42:18Z
  file_id: '20497'
  file_name: 2025_AstronomyAstrophysics_Marshall.pdf
  file_size: 3871156
  relation: main_file
  success: 1
file_date_updated: 2025-10-20T07:42:18Z
has_accepted_license: '1'
intvolume: '       702'
isi: 1
language:
- iso: eng
month: '10'
oa: 1
oa_version: Published Version
publication: Astronomy & Astrophysics
publication_identifier:
  eissn:
  - 1432-0746
  issn:
  - 0004-6361
publication_status: published
publisher: EDP Sciences
quality_controlled: '1'
scopus_import: '1'
status: public
title: 'GA-NIFS and EIGER: A merging quasar host at z = 7 with an overmassive black
  hole'
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 702
year: '2025'
...
---
OA_place: repository
OA_type: green
_id: '20495'
abstract:
- lang: eng
  text: We consider a tracer particle coupled to a Bose scalar field and study the
    regime where the field’s propagation speed approaches infinity. For initial states
    devoid of field excitations, we introduce an effective approximation of the time-evolved
    wave function and prove its validity in Hilbert space norm. In this approximation,
    the field remains in the vacuum state, while the tracer particle propagates with
    a modified dispersion relation. Physically, the new dispersion relation can be
    understood as the effect of radiative corrections due to interactions with virtual
    bosons. Mathematically, it is defined as the solution of a self-consistent nonlinear
    equation, whose form depends on the relevant time scale.
acknowledgement: E.C. is deeply grateful to Robert Seiringer for his hospitality at
  ISTA, without which this project would not have been possible. E.C. is thankful
  to Thomas Chen for valuable comments and for pointing out useful references. E.C
  gratefully acknowledges support from the Provost’s Graduate Excellence Fellowship
  at The University of Texas at Austin and from the NSF grant DMS-2009549, and the
  NSF grant DMS-2009800 through T. Chen. This material is based upon work supported
  by the National Science Foundation under Grant No. DMS-1928930, while E.C was in
  residence at the Simons Laufer Mathematical Sciences Institute in Berkeley, California,
  during the Fall 2025 semester.
article_processing_charge: No
article_type: original
arxiv: 1
author:
- first_name: Esteban
  full_name: Cárdenas, Esteban
  last_name: Cárdenas
- first_name: David Johannes
  full_name: Mitrouskas, David Johannes
  id: cbddacee-2b11-11eb-a02e-a2e14d04e52d
  last_name: Mitrouskas
citation:
  ama: Cárdenas E, Mitrouskas DJ. Radiative corrections to the dynamics of a tracer
    particle coupled to a Bose ccalar field. <i>Annales Henri Poincare</i>. 2025.
    doi:<a href="https://doi.org/10.1007/s00023-025-01626-3">10.1007/s00023-025-01626-3</a>
  apa: Cárdenas, E., &#38; Mitrouskas, D. J. (2025). Radiative corrections to the
    dynamics of a tracer particle coupled to a Bose ccalar field. <i>Annales Henri
    Poincare</i>. Springer Nature. <a href="https://doi.org/10.1007/s00023-025-01626-3">https://doi.org/10.1007/s00023-025-01626-3</a>
  chicago: Cárdenas, Esteban, and David Johannes Mitrouskas. “Radiative Corrections
    to the Dynamics of a Tracer Particle Coupled to a Bose Ccalar Field.” <i>Annales
    Henri Poincare</i>. Springer Nature, 2025. <a href="https://doi.org/10.1007/s00023-025-01626-3">https://doi.org/10.1007/s00023-025-01626-3</a>.
  ieee: E. Cárdenas and D. J. Mitrouskas, “Radiative corrections to the dynamics of
    a tracer particle coupled to a Bose ccalar field,” <i>Annales Henri Poincare</i>.
    Springer Nature, 2025.
  ista: Cárdenas E, Mitrouskas DJ. 2025. Radiative corrections to the dynamics of
    a tracer particle coupled to a Bose ccalar field. Annales Henri Poincare.
  mla: Cárdenas, Esteban, and David Johannes Mitrouskas. “Radiative Corrections to
    the Dynamics of a Tracer Particle Coupled to a Bose Ccalar Field.” <i>Annales
    Henri Poincare</i>, Springer Nature, 2025, doi:<a href="https://doi.org/10.1007/s00023-025-01626-3">10.1007/s00023-025-01626-3</a>.
  short: E. Cárdenas, D.J. Mitrouskas, Annales Henri Poincare (2025).
date_created: 2025-10-19T22:01:32Z
date_published: 2025-10-03T00:00:00Z
date_updated: 2025-12-01T12:56:12Z
day: '03'
department:
- _id: RoSe
doi: 10.1007/s00023-025-01626-3
external_id:
  arxiv:
  - '2405.05251'
  isi:
  - '001586237500001'
isi: 1
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2405.05251
month: '10'
oa: 1
oa_version: Preprint
publication: Annales Henri Poincare
publication_identifier:
  issn:
  - 1424-0637
publication_status: epub_ahead
publisher: Springer Nature
quality_controlled: '1'
scopus_import: '1'
status: public
title: Radiative corrections to the dynamics of a tracer particle coupled to a Bose
  ccalar field
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20496'
abstract:
- lang: eng
  text: The practical implementation of aqueous zinc-ion batteries (AZIBs) is limited
    by uncontrolled zinc (Zn) dendrite growth during anode plating, compromising both
    safety and cycle life. Typically, Zn plating proceeds via 2D growth along the
    six equivalent prismatic [1010] directions of the hexagonal close-packed (HCP)
    Zn lattice, forming hexagonal platelets that promote dendrite formation. Here,
    an effective electrolyte engineering strategy is presented using rare-earth ions
    to regulate Zn plating. Combined multiscale experimental analyses and computational
    modeling reveal that these ions preferentially adsorb onto the prismatic {1010}
    facets, suppressing lateral epitaxial growth of the basal (0002) planes. This
    redirects Zn plating toward an apparent screw dislocation-driven growth along
    the [0001] axis. The resulting growth pathway, together with randomly oriented
    Zn nucleation, yields dense, uniform, and dendrite-free Zn layers with markedly
    improved cycling stability and high depth-of-discharge operation, thereby challenging
    the prevailing assumption that dendrite suppression requires (0002)-oriented growth
    parallel to the substrate. This work provides new mechanistic insights into Zn
    plating dynamics and establishes a scalable strategy for stable, dendrite-free
    Zn anodes in next-generation AZIBs.
acknowledged_ssus:
- _id: NanoFab
- _id: EM-Fac
acknowledgement: M.I. and S.H. acknowledge financial support from ISTA and the Werner
  Siemens Foundation. Q.S. acknowledges financial support from the European Union's
  Horizon Europe Research and Innovation Programme under the Marie Skłodowska-Curie
  Grant Agreement No. 101211154. This work was supported by the Generalitat de Catalunya
  (Grant No. 2021SGR01581), the National Natural Science Foundation of China (Grant
  Nos. 52125505 and 52475336), and the Joint Fund of Henan Province Science and Technology
  R&D Program (Grant No. 235200810097). Part of this research was carried out with
  support from the Scientific Service Units (SSU) of the Institute of Science and
  Technology Austria (ISTA), utilizing resources provided by the Electron Microscopy
  Facility (EMF) and the Nanofabrication Facility (NFF).
article_number: e10906
article_processing_charge: Yes (in subscription journal)
article_type: original
author:
- first_name: Guifang
  full_name: Zeng, Guifang
  last_name: Zeng
- first_name: Sharona
  full_name: Horta, Sharona
  id: 03a7e858-01b1-11ec-8b71-99ae6c4a05bc
  last_name: Horta
- first_name: Qing
  full_name: Sun, Qing
  last_name: Sun
- first_name: Malik Dilshad
  full_name: Khan, Malik Dilshad
  last_name: Khan
- first_name: Maria
  full_name: Ibáñez, Maria
  id: 43C61214-F248-11E8-B48F-1D18A9856A87
  last_name: Ibáñez
  orcid: 0000-0001-5013-2843
- first_name: Yuhang
  full_name: Han, Yuhang
  last_name: Han
- first_name: Shang
  full_name: Wang, Shang
  last_name: Wang
- first_name: Longqiu
  full_name: Li, Longqiu
  last_name: Li
- first_name: Lijie
  full_name: Ci, Lijie
  last_name: Ci
- first_name: Yanhong
  full_name: Tian, Yanhong
  last_name: Tian
- first_name: Andreu
  full_name: Cabot, Andreu
  last_name: Cabot
citation:
  ama: Zeng G, Horta S, Sun Q, et al. Crystal growth engineering for dendrite-free
    Zinc metal plating. <i>Advanced Materials</i>. 2025. doi:<a href="https://doi.org/10.1002/adma.202510906">10.1002/adma.202510906</a>
  apa: Zeng, G., Horta, S., Sun, Q., Khan, M. D., Ibáñez, M., Han, Y., … Cabot, A.
    (2025). Crystal growth engineering for dendrite-free Zinc metal plating. <i>Advanced
    Materials</i>. Wiley. <a href="https://doi.org/10.1002/adma.202510906">https://doi.org/10.1002/adma.202510906</a>
  chicago: Zeng, Guifang, Sharona Horta, Qing Sun, Malik Dilshad Khan, Maria Ibáñez,
    Yuhang Han, Shang Wang, et al. “Crystal Growth Engineering for Dendrite-Free Zinc
    Metal Plating.” <i>Advanced Materials</i>. Wiley, 2025. <a href="https://doi.org/10.1002/adma.202510906">https://doi.org/10.1002/adma.202510906</a>.
  ieee: G. Zeng <i>et al.</i>, “Crystal growth engineering for dendrite-free Zinc
    metal plating,” <i>Advanced Materials</i>. Wiley, 2025.
  ista: Zeng G, Horta S, Sun Q, Khan MD, Ibáñez M, Han Y, Wang S, Li L, Ci L, Tian
    Y, Cabot A. 2025. Crystal growth engineering for dendrite-free Zinc metal plating.
    Advanced Materials., e10906.
  mla: Zeng, Guifang, et al. “Crystal Growth Engineering for Dendrite-Free Zinc Metal
    Plating.” <i>Advanced Materials</i>, e10906, Wiley, 2025, doi:<a href="https://doi.org/10.1002/adma.202510906">10.1002/adma.202510906</a>.
  short: G. Zeng, S. Horta, Q. Sun, M.D. Khan, M. Ibáñez, Y. Han, S. Wang, L. Li,
    L. Ci, Y. Tian, A. Cabot, Advanced Materials (2025).
date_created: 2025-10-19T22:01:32Z
date_published: 2025-09-30T00:00:00Z
date_updated: 2025-12-01T12:56:48Z
day: '30'
ddc:
- '530'
department:
- _id: MaIb
doi: 10.1002/adma.202510906
external_id:
  isi:
  - '001583809400001'
  pmid:
  - '41025826'
has_accepted_license: '1'
isi: 1
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.1002/adma.202510906
month: '09'
oa: 1
oa_version: Published Version
pmid: 1
project:
- _id: 9B8F7476-BA93-11EA-9121-9846C619BF3A
  name: 'HighTE: The Werner Siemens Laboratory for the High Throughput Discovery of
    Semiconductors for Waste Heat Recovery'
publication: Advanced Materials
publication_identifier:
  eissn:
  - 1521-4095
  issn:
  - 0935-9648
publication_status: epub_ahead
publisher: Wiley
quality_controlled: '1'
scopus_import: '1'
status: public
title: Crystal growth engineering for dendrite-free Zinc metal plating
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
PlanS_conform: '1'
_id: '20503'
abstract:
- lang: eng
  text: We introduce a class of interacting fermionic quantum models in d dimensions
    with nodal interactions that exhibit superdiffusive transport. We establish nonperturbatively
    that the nodal structure of the interactions gives rise to long-lived quasiparticle
    excitations that result in a diverging diffusion constant, even though the system
    is fully chaotic. Using a Boltzmann equation approach, we find that the charge
    mode acquires an anomalous dispersion relation at long wavelength ωðqÞ ∼ qz with
    dynamical exponent z ¼ min½ð2n þ dÞ=2n; 2, where n is the order of the nodal point
    in momentum space. We verify our predictions in one-dimensional systems using
    tensor-network techniques.
acknowledgement: "Y.-P. W. thanks Chen Fang, Marko Žnidarič, Enej Ilievski, and Curt
  von Keyserlingk for useful\r\ndiscussion. Y.-P. W. is supported by Chinese Academy
  of Sciences under Grant No. XDB33020000, National Natural Science Foundation of
  China (NSFC) under Grants No. 12325404 and No. 12188101 and National Key R&D Program
  of China under Grants\r\nNo. 2022YFA1403800 and No. 2023YFA1406704. S. G. acknowledges
  support from NSF No. QuSEC-TAQS OSI 2326767. J. R. acknowledges support by the Leverhulme
  Trust Research Leadership Award No. RL-2019-015. R. V. acknowledges partial support
  from the U.S. Department of Energy, Office of Science, Basic Energy Sciences, under
  Award No. DE-SC0023999."
article_number: '166303'
article_processing_charge: Yes (via OA deal)
article_type: original
arxiv: 1
author:
- first_name: Yupeng
  full_name: Wang, Yupeng
  id: 6a394bd3-0984-11f0-8835-a92b812ec257
  last_name: Wang
- first_name: Jie
  full_name: Ren, Jie
  last_name: Ren
- first_name: Sarang
  full_name: Gopalakrishnan, Sarang
  last_name: Gopalakrishnan
- first_name: Romain
  full_name: Vasseur, Romain
  last_name: Vasseur
citation:
  ama: Wang Y, Ren J, Gopalakrishnan S, Vasseur R. Superdiffusive transport in chaotic
    quantum systems with nodal interactions. <i>Physical Review Letters</i>. 2025;135(16).
    doi:<a href="https://doi.org/10.1103/xx9z-4j6c">10.1103/xx9z-4j6c</a>
  apa: Wang, Y., Ren, J., Gopalakrishnan, S., &#38; Vasseur, R. (2025). Superdiffusive
    transport in chaotic quantum systems with nodal interactions. <i>Physical Review
    Letters</i>. American Physical Society. <a href="https://doi.org/10.1103/xx9z-4j6c">https://doi.org/10.1103/xx9z-4j6c</a>
  chicago: Wang, Yupeng, Jie Ren, Sarang Gopalakrishnan, and Romain Vasseur. “Superdiffusive
    Transport in Chaotic Quantum Systems with Nodal Interactions.” <i>Physical Review
    Letters</i>. American Physical Society, 2025. <a href="https://doi.org/10.1103/xx9z-4j6c">https://doi.org/10.1103/xx9z-4j6c</a>.
  ieee: Y. Wang, J. Ren, S. Gopalakrishnan, and R. Vasseur, “Superdiffusive transport
    in chaotic quantum systems with nodal interactions,” <i>Physical Review Letters</i>,
    vol. 135, no. 16. American Physical Society, 2025.
  ista: Wang Y, Ren J, Gopalakrishnan S, Vasseur R. 2025. Superdiffusive transport
    in chaotic quantum systems with nodal interactions. Physical Review Letters. 135(16),
    166303.
  mla: Wang, Yupeng, et al. “Superdiffusive Transport in Chaotic Quantum Systems with
    Nodal Interactions.” <i>Physical Review Letters</i>, vol. 135, no. 16, 166303,
    American Physical Society, 2025, doi:<a href="https://doi.org/10.1103/xx9z-4j6c">10.1103/xx9z-4j6c</a>.
  short: Y. Wang, J. Ren, S. Gopalakrishnan, R. Vasseur, Physical Review Letters 135
    (2025).
corr_author: '1'
date_created: 2025-10-20T11:07:35Z
date_published: 2025-10-15T00:00:00Z
date_updated: 2025-10-21T07:47:07Z
day: '15'
ddc:
- '530'
department:
- _id: MaSe
doi: 10.1103/xx9z-4j6c
external_id:
  arxiv:
  - '2501.08381'
file:
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intvolume: '       135'
issue: '16'
language:
- iso: eng
month: '10'
oa: 1
oa_version: Published Version
publication: Physical Review Letters
publication_identifier:
  eissn:
  - 1079-7114
  issn:
  - 0031-9007
publication_status: published
publisher: American Physical Society
quality_controlled: '1'
scopus_import: '1'
status: public
title: Superdiffusive transport in chaotic quantum systems with nodal interactions
tmp:
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type: journal_article
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volume: 135
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...
---
OA_place: publisher
OA_type: hybrid
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_id: '20504'
abstract:
- lang: eng
  text: "Let r, k,  be integers such that 0 ≤  ≤ (k/r). Given a large r-uniform hypergraph
    G, we consider the\r\nfraction of k-vertex subsets that span exactly  edges. If
    \ is 0 or (k/r), this fraction can be exactly 1 (by taking G to be empty or complete),
    but for all other values of , one might suspect that this fraction is always significantly
    smaller than 1.\r\nIn this paper we prove an essentially optimal result along
    these lines: if  is not 0 or (k/r), then this\r\nfraction is at most (1/e) + ε,
    assuming k is sufficiently large in terms of r and ε > 0, and G is sufficiently
    large in terms of k. Previously, this was only known for a very limited range
    of values of r, k,  (due to Kwan–Sudakov–Tran, Fox–Sauermann, and Martinsson–Mousset–Noever–Trujic).
    Our result answers a question of Alon–Hefetz–Krivelevich–Tyomkyn, who suggested
    this as a hypergraph generalization of their edge-statistics conjecture. We also
    prove a much stronger bound when  is far from 0 and (k/r)."
acknowledgement: "This work was supported by NSF CAREER award DMS-2237646 [to V.J.],
  ERC Starting Grant “RANDSTRUCT” [no. 101076777 to M.K.], NSF grant DMS-2153576 [to
  D.M.], and the National Key Research and Development Program of China [2023YFA101020
  to T.T.].\r\nWe would like to thank Lisa Sauermann for her helpful comments. We
  would also like to thank Alex Grebennikov for identifying an oversight in the application
  of Theorem 7.1 (in a previous version of this paper)."
article_number: rnaf273
article_processing_charge: Yes (via OA deal)
article_type: original
arxiv: 1
author:
- first_name: Vishesh
  full_name: Jain, Vishesh
  last_name: Jain
- first_name: Matthew Alan
  full_name: Kwan, Matthew Alan
  id: 5fca0887-a1db-11eb-95d1-ca9d5e0453b3
  last_name: Kwan
  orcid: 0000-0002-4003-7567
- first_name: Dhruv
  full_name: Mubayi, Dhruv
  last_name: Mubayi
- first_name: Tuan
  full_name: Tran, Tuan
  last_name: Tran
citation:
  ama: Jain V, Kwan MA, Mubayi D, Tran T. The edge-statistics conjecture for hypergraphs.
    <i>International Mathematics Research Notices</i>. 2025;2025(18). doi:<a href="https://doi.org/10.1093/imrn/rnaf273">10.1093/imrn/rnaf273</a>
  apa: Jain, V., Kwan, M. A., Mubayi, D., &#38; Tran, T. (2025). The edge-statistics
    conjecture for hypergraphs. <i>International Mathematics Research Notices</i>.
    Oxford University Press. <a href="https://doi.org/10.1093/imrn/rnaf273">https://doi.org/10.1093/imrn/rnaf273</a>
  chicago: Jain, Vishesh, Matthew Alan Kwan, Dhruv Mubayi, and Tuan Tran. “The Edge-Statistics
    Conjecture for Hypergraphs.” <i>International Mathematics Research Notices</i>.
    Oxford University Press, 2025. <a href="https://doi.org/10.1093/imrn/rnaf273">https://doi.org/10.1093/imrn/rnaf273</a>.
  ieee: V. Jain, M. A. Kwan, D. Mubayi, and T. Tran, “The edge-statistics conjecture
    for hypergraphs,” <i>International Mathematics Research Notices</i>, vol. 2025,
    no. 18. Oxford University Press, 2025.
  ista: Jain V, Kwan MA, Mubayi D, Tran T. 2025. The edge-statistics conjecture for
    hypergraphs. International Mathematics Research Notices. 2025(18), rnaf273.
  mla: Jain, Vishesh, et al. “The Edge-Statistics Conjecture for Hypergraphs.” <i>International
    Mathematics Research Notices</i>, vol. 2025, no. 18, rnaf273, Oxford University
    Press, 2025, doi:<a href="https://doi.org/10.1093/imrn/rnaf273">10.1093/imrn/rnaf273</a>.
  short: V. Jain, M.A. Kwan, D. Mubayi, T. Tran, International Mathematics Research
    Notices 2025 (2025).
corr_author: '1'
date_created: 2025-10-20T11:08:57Z
date_published: 2025-09-11T00:00:00Z
date_updated: 2025-12-01T13:00:35Z
day: '11'
ddc:
- '510'
department:
- _id: MaKw
doi: 10.1093/imrn/rnaf273
external_id:
  arxiv:
  - '2505.03954'
  isi:
  - '001575137400001'
file:
- access_level: open_access
  checksum: 016aa4df9453dc180ae7504ac77bf72f
  content_type: application/pdf
  creator: dernst
  date_created: 2025-10-21T07:36:56Z
  date_updated: 2025-10-21T07:36:56Z
  file_id: '20511'
  file_name: 2025_IMRN_Jain.pdf
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has_accepted_license: '1'
intvolume: '      2025'
isi: 1
issue: '18'
language:
- iso: eng
month: '09'
oa: 1
oa_version: Published Version
project:
- _id: bd95085b-d553-11ed-ba76-e55d3349be45
  grant_number: '101076777'
  name: Randomness and structure in combinatorics
publication: International Mathematics Research Notices
publication_identifier:
  eissn:
  - 1687-0247
  issn:
  - 1073-7928
publication_status: published
publisher: Oxford University Press
quality_controlled: '1'
scopus_import: '1'
status: public
title: The edge-statistics conjecture for hypergraphs
tmp:
  image: /images/cc_by.png
  legal_code_url: https://creativecommons.org/licenses/by/4.0/legalcode
  name: Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)
  short: CC BY (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 2025
year: '2025'
...
