---
OA_place: publisher
OA_type: hybrid
_id: '19729'
abstract:
- lang: eng
  text: 'From anthropogenic litter carried by ocean currents to plant stems travelling
    through the atmosphere, geophysical flows are often seeded with elongated, fibre-like
    particles. In this study, we used a large-scale laboratory model of a tidal current
    – representative of a widespread class of geophysical flows – to investigate the
    tumbling motion of long, slender and floating fibres in the complex turbulence
    generated by flow interactions with a tidal inlet. Despite the non-stationary,
    non-homogeneous and anisotropic nature of this turbulence, we find that long fibres
    statistically rotate at the same frequency as eddies of similar size, a phenomenon
    called scale selection, which is known to occur in ideal turbulence. Furthermore,
    we report that the signal of the instantaneous transverse velocity difference
    between the fibre ends changes significantly from the signal produced by the flow
    in the fibre surroundings, although the two are statistically equivalent. These
    observations have twofold implications. On the one hand, they confirm the reliability
    of using the end-to-end velocity signal of rigid fibres to probe the two-point
    transverse statistics of the flow, even under realistic conditions: oceanographers
    could exploit this observation to measure transverse velocity differences through
    elongated floats in the field, where superdiffusion complicates collecting sufficient
    data to probe two-point turbulence statistics at a fixed separation effectively.
    On the other hand, by addressing the dynamics of inertial range particles floating
    in the coastal zone, these observations are crucial to improving our ability to
    predict the fate of meso- and macro-litter, a size class that is currently understudied.'
acknowledgement: A.S. expresses thanks for support from the Research Grants Council
  of Hong Kong (project IDs 15216422 and C5032-22EF) and from the Research Institute
  for Land and Space (RILS) (project ID P0049622). S.B. is funded by the European
  Union’s Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie
  grant agreement (no.101034413).
article_number: A5
article_processing_charge: No
article_type: original
author:
- first_name: Annalisa
  full_name: De Leo, Annalisa
  last_name: De Leo
- first_name: Stefano
  full_name: Brizzolara, Stefano
  id: 4bbe33b8-c59a-11ee-a1af-fa33d1ac42c4
  last_name: Brizzolara
- first_name: Mattia
  full_name: Cavaiola, Mattia
  last_name: Cavaiola
- first_name: Junlin
  full_name: He, Junlin
  last_name: He
- first_name: Alessandro
  full_name: Stocchino, Alessandro
  last_name: Stocchino
citation:
  ama: De Leo A, Brizzolara S, Cavaiola M, He J, Stocchino A. Rigid fibre transport
    in a periodic non-homogeneous geophysical turbulent flow. <i>Journal of Fluid
    Mechanics</i>. 2025;1011. doi:<a href="https://doi.org/10.1017/jfm.2025.362">10.1017/jfm.2025.362</a>
  apa: De Leo, A., Brizzolara, S., Cavaiola, M., He, J., &#38; Stocchino, A. (2025).
    Rigid fibre transport in a periodic non-homogeneous geophysical turbulent flow.
    <i>Journal of Fluid Mechanics</i>. Cambridge University Press. <a href="https://doi.org/10.1017/jfm.2025.362">https://doi.org/10.1017/jfm.2025.362</a>
  chicago: De Leo, Annalisa, Stefano Brizzolara, Mattia Cavaiola, Junlin He, and Alessandro
    Stocchino. “Rigid Fibre Transport in a Periodic Non-Homogeneous Geophysical Turbulent
    Flow.” <i>Journal of Fluid Mechanics</i>. Cambridge University Press, 2025. <a
    href="https://doi.org/10.1017/jfm.2025.362">https://doi.org/10.1017/jfm.2025.362</a>.
  ieee: A. De Leo, S. Brizzolara, M. Cavaiola, J. He, and A. Stocchino, “Rigid fibre
    transport in a periodic non-homogeneous geophysical turbulent flow,” <i>Journal
    of Fluid Mechanics</i>, vol. 1011. Cambridge University Press, 2025.
  ista: De Leo A, Brizzolara S, Cavaiola M, He J, Stocchino A. 2025. Rigid fibre transport
    in a periodic non-homogeneous geophysical turbulent flow. Journal of Fluid Mechanics.
    1011, A5.
  mla: De Leo, Annalisa, et al. “Rigid Fibre Transport in a Periodic Non-Homogeneous
    Geophysical Turbulent Flow.” <i>Journal of Fluid Mechanics</i>, vol. 1011, A5,
    Cambridge University Press, 2025, doi:<a href="https://doi.org/10.1017/jfm.2025.362">10.1017/jfm.2025.362</a>.
  short: A. De Leo, S. Brizzolara, M. Cavaiola, J. He, A. Stocchino, Journal of Fluid
    Mechanics 1011 (2025).
date_created: 2025-05-25T22:16:46Z
date_published: 2025-05-16T00:00:00Z
date_updated: 2025-09-30T12:38:34Z
day: '16'
ddc:
- '530'
department:
- _id: BjHo
doi: 10.1017/jfm.2025.362
ec_funded: 1
external_id:
  isi:
  - '001489159700001'
file:
- access_level: open_access
  checksum: f1b0f6a977fdf2d6eb9e16c11d030c0c
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  date_created: 2025-05-28T08:12:07Z
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fulldoi: https://doi.org/10.1017/jfm.2025.362
has_accepted_license: '1'
intvolume: '      1011'
isi: 1
language:
- iso: eng
month: '05'
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: Journal of Fluid Mechanics
publication_identifier:
  eissn:
  - 1469-7645
  issn:
  - 0022-1120
publication_status: published
publisher: Cambridge University Press
quality_controlled: '1'
scopus_import: '1'
status: public
title: Rigid fibre transport in a periodic non-homogeneous geophysical turbulent flow
tmp:
  image: /images/cc_by.png
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  short: CC BY (4.0)
type: journal_article
user_id: 317138e5-6ab7-11ef-aa6d-ffef3953e345
volume: 1011
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
_id: '19730'
abstract:
- lang: eng
  text: Feigenbaum universality is shown to occur in subcritical shear flows. Our
    testing ground is the counter-rotation regime of the Taylor–Couette flow, where
    numerical calculations are performed within a small periodic domain. The accurate
    computation of up to the seventh period-doubling bifurcation, assisted by a purposely
    defined Poincaré section, has enabled us to reproduce the two Feigenbaum universal
    constants with unprecedented accuracy in a fluid flow problem. We have further
    devised a method to predict the bifurcation diagram up to the accumulation point
    of the cascade based on the detailed inspection of just the first few period-doubling
    bifurcations. Remarkably, the method is applicable beyond the accumulation point,
    with predictions remaining valid, in a statistical sense, for the chaotic dynamics
    that follows.
acknowledgement: This research is supported by the Australian Research Council Discovery
  Project DP230102188 and the Ministerio de Ciencia, Innovación y Universidades (Agencia
  Estatal de Investigación, project nos. PID 2020–114043 GB-I00 (MCIN/AEI/10.13039/501100011033)
  and PID 2023–150029NB-I00 (MCIN/AEI/10.13039/501100011033/FEDER, UE). B.W.’s and
  R.A.’s research has been funded by the European Union’s Horizon 2020 research and
  innovation programme (Marie Skłodowska-Curie Grant Agreement No. 101034413). R.A.
  has also been funded by the Austrian Science Fund (FWF) 10.55776/ESP1481224.
article_number: A36
article_processing_charge: Yes (in subscription journal)
article_type: original
author:
- first_name: Baoying
  full_name: Wang, Baoying
  id: df755ffe-735a-11ee-bb55-dff29d61d338
  last_name: Wang
  orcid: 0000-0002-6229-0336
- first_name: Roger
  full_name: Ayats López, Roger
  id: ab77522d-073b-11ed-8aff-e71b39258362
  last_name: Ayats López
  orcid: 0000-0001-6572-0621
- first_name: K.
  full_name: Deguchi, K.
  last_name: Deguchi
- first_name: A.
  full_name: Meseguer, A.
  last_name: Meseguer
- first_name: F.
  full_name: Mellibovsky, F.
  last_name: Mellibovsky
citation:
  ama: Wang B, Ayats López R, Deguchi K, Meseguer A, Mellibovsky F. Feigenbaum universality
    in subcritical Taylor-Couette flow. <i>Journal of Fluid Mechanics</i>. 2025;1010.
    doi:<a href="https://doi.org/10.1017/jfm.2025.278">10.1017/jfm.2025.278</a>
  apa: Wang, B., Ayats López, R., Deguchi, K., Meseguer, A., &#38; Mellibovsky, F.
    (2025). Feigenbaum universality in subcritical Taylor-Couette flow. <i>Journal
    of Fluid Mechanics</i>. Cambridge University Press. <a href="https://doi.org/10.1017/jfm.2025.278">https://doi.org/10.1017/jfm.2025.278</a>
  chicago: Wang, Baoying, Roger Ayats López, K. Deguchi, A. Meseguer, and F. Mellibovsky.
    “Feigenbaum Universality in Subcritical Taylor-Couette Flow.” <i>Journal of Fluid
    Mechanics</i>. Cambridge University Press, 2025. <a href="https://doi.org/10.1017/jfm.2025.278">https://doi.org/10.1017/jfm.2025.278</a>.
  ieee: B. Wang, R. Ayats López, K. Deguchi, A. Meseguer, and F. Mellibovsky, “Feigenbaum
    universality in subcritical Taylor-Couette flow,” <i>Journal of Fluid Mechanics</i>,
    vol. 1010. Cambridge University Press, 2025.
  ista: Wang B, Ayats López R, Deguchi K, Meseguer A, Mellibovsky F. 2025. Feigenbaum
    universality in subcritical Taylor-Couette flow. Journal of Fluid Mechanics. 1010,
    A36.
  mla: Wang, Baoying, et al. “Feigenbaum Universality in Subcritical Taylor-Couette
    Flow.” <i>Journal of Fluid Mechanics</i>, vol. 1010, A36, Cambridge University
    Press, 2025, doi:<a href="https://doi.org/10.1017/jfm.2025.278">10.1017/jfm.2025.278</a>.
  short: B. Wang, R. Ayats López, K. Deguchi, A. Meseguer, F. Mellibovsky, Journal
    of Fluid Mechanics 1010 (2025).
date_created: 2025-05-25T22:16:48Z
date_published: 2025-05-14T00:00:00Z
date_updated: 2025-09-30T12:39:05Z
day: '14'
ddc:
- '530'
department:
- _id: BjHo
doi: 10.1017/jfm.2025.278
ec_funded: 1
external_id:
  isi:
  - '001487354900001'
file:
- access_level: open_access
  checksum: 77f39b762a0e59e88954afb93b23cc7a
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  creator: dernst
  date_created: 2025-05-28T08:32:33Z
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file_date_updated: 2025-05-28T08:32:33Z
fulldoi: https://doi.org/10.1017/jfm.2025.278
has_accepted_license: '1'
intvolume: '      1010'
isi: 1
language:
- iso: eng
month: '05'
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'
- _id: 942a0200-16d5-11f0-9cad-f48ab22dfd1c
  grant_number: ESP 1481224
  name: Pattern Formation Mechanisms in Planar Shear Flows
publication: Journal of Fluid Mechanics
publication_identifier:
  eissn:
  - 1469-7645
  issn:
  - 0022-1120
publication_status: published
publisher: Cambridge University Press
quality_controlled: '1'
scopus_import: '1'
status: public
title: Feigenbaum universality in subcritical Taylor-Couette flow
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: 317138e5-6ab7-11ef-aa6d-ffef3953e345
volume: 1010
year: '2025'
...
---
DOAJ_listed: '1'
OA_place: publisher
OA_type: gold
_id: '19731'
abstract:
- lang: eng
  text: "In an era of high-resolution displays, powerful design software, and automated
    plotting tools, one would think that scientific figures would be clearer than
    ever. Yet, despite numerous editorials, guidelines, and workshops dedicated to
    improving figure design, poorly constructed figures remain a persistent issue.
    Editors and experienced researchers have repeatedly highlighted key pitfalls such
    as cluttered layouts, inconsistent formatting, poor color choices, and misleading
    visuals. (1−8) Yet, the aforementioned graphical shortcomings continue to plague
    even high-impact journals. Why? The problem is not a lack of technology; it is
    a combination of poor design habits, rushed deadlines, and a tendency to treat
    figures as mere “data dumps” rather than as essential storytelling tools.\r\nMany
    people process information more effectively through visuals, naturally associating
    concepts easily when presented graphically. A well-crafted figure serves as a
    narrative within the larger story, making complex ideas more accessible. Unfortunately,
    visual storytelling often takes a backseat in scientific communication. Scientists
    are trained to analyze and interpret data, but many default to software-generated
    plots without considering accessibility or how their figures will be perceived
    by readers outside their immediate field. Without thoughtful design, figures lose
    their power to enhance understanding, ultimately limiting the significance of
    the research itself.\r\nIn this editorial, we examine the challenges that, in
    our view, hamper scientific figure design and discuss how thoughtful refinements
    driven by feedback, iteration, and design principles can enhance clarity and impact
    visual communication."
article_processing_charge: Yes
article_type: editorial
author:
- first_name: Aiswarya
  full_name: Rayaroth Puthiyaveettil, Aiswarya
  id: 8aceb01b-8972-11ed-ae7b-d5fe53775add
  last_name: Rayaroth Puthiyaveettil
- first_name: Christine
  full_name: Fiedler, Christine
  id: bd3fceba-dc74-11ea-a0a7-c17f71817366
  last_name: Fiedler
- first_name: Maria
  full_name: Ibáñez, Maria
  id: 43C61214-F248-11E8-B48F-1D18A9856A87
  last_name: Ibáñez
  orcid: 0000-0001-5013-2843
citation:
  ama: 'Rayaroth Puthiyaveettil A, Fiedler C, Ibáñez M. Let us FIGURE it out: Why
    do scientists still make “bad” figures? <i>ACS Materials Au</i>. 2025;5(3):438-440.
    doi:<a href="https://doi.org/10.1021/acsmaterialsau.5c00037">10.1021/acsmaterialsau.5c00037</a>'
  apa: 'Rayaroth Puthiyaveettil, A., Fiedler, C., &#38; Ibáñez, M. (2025). Let us
    FIGURE it out: Why do scientists still make “bad” figures? <i>ACS Materials Au</i>.
    American Chemical Society. <a href="https://doi.org/10.1021/acsmaterialsau.5c00037">https://doi.org/10.1021/acsmaterialsau.5c00037</a>'
  chicago: 'Rayaroth Puthiyaveettil, Aiswarya, Christine Fiedler, and Maria Ibáñez.
    “Let Us FIGURE It out: Why Do Scientists Still Make ‘Bad’ Figures?” <i>ACS Materials
    Au</i>. American Chemical Society, 2025. <a href="https://doi.org/10.1021/acsmaterialsau.5c00037">https://doi.org/10.1021/acsmaterialsau.5c00037</a>.'
  ieee: 'A. Rayaroth Puthiyaveettil, C. Fiedler, and M. Ibáñez, “Let us FIGURE it
    out: Why do scientists still make ‘bad’ figures?,” <i>ACS Materials Au</i>, vol.
    5, no. 3. American Chemical Society, pp. 438–440, 2025.'
  ista: 'Rayaroth Puthiyaveettil A, Fiedler C, Ibáñez M. 2025. Let us FIGURE it out:
    Why do scientists still make “bad” figures? ACS Materials Au. 5(3), 438–440.'
  mla: 'Rayaroth Puthiyaveettil, Aiswarya, et al. “Let Us FIGURE It out: Why Do Scientists
    Still Make ‘Bad’ Figures?” <i>ACS Materials Au</i>, vol. 5, no. 3, American Chemical
    Society, 2025, pp. 438–40, doi:<a href="https://doi.org/10.1021/acsmaterialsau.5c00037">10.1021/acsmaterialsau.5c00037</a>.'
  short: A. Rayaroth Puthiyaveettil, C. Fiedler, M. Ibáñez, ACS Materials Au 5 (2025)
    438–440.
corr_author: '1'
date_created: 2025-05-25T22:16:51Z
date_published: 2025-05-14T00:00:00Z
date_updated: 2025-06-11T13:23:01Z
day: '14'
ddc:
- '540'
department:
- _id: MaIb
doi: 10.1021/acsmaterialsau.5c00037
external_id:
  pmid:
  - '40385955'
file:
- access_level: open_access
  checksum: a3aa15e4022fa359d6ba5afb96268841
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  creator: dernst
  date_created: 2025-05-28T08:48:38Z
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  file_id: '19753'
  file_name: 2025_ACSMaterialsAu_Rayaroth.pdf
  file_size: 1750018
  relation: main_file
  success: 1
file_date_updated: 2025-05-28T08:48:38Z
fulldoi: https://doi.org/10.1021/acsmaterialsau.5c00037
has_accepted_license: '1'
intvolume: '         5'
issue: '3'
language:
- iso: eng
month: '05'
oa: 1
oa_version: Published Version
page: 438-440
pmid: 1
publication: ACS Materials Au
publication_identifier:
  eissn:
  - 2694-2461
publication_status: published
publisher: American Chemical Society
quality_controlled: '1'
scopus_import: '1'
status: public
title: 'Let us FIGURE it out: Why do scientists still make “bad” figures?'
tmp:
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  short: CC BY-NC-ND (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 5
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
_id: '19732'
abstract:
- lang: eng
  text: The transition to chaos in the subcritical regime of counter-rotating Taylor–Couette
    flow is investigated using a minimal periodic domain capable of sustaining coherent
    structures. Following a Feigenbaum cascade, the dynamics is found to be remarkably
    well approximated by a simple discrete map that admits rigorous proof of its chaotic
    nature. The chaotic set that arises for the map features densely distributed periodic
    points that are in one-to-one correspondence with unstable periodic orbits (UPOs)
    of the Navier–Stokes system. This supports the increasingly accepted view that
    UPOs may serve as the backbone of turbulence and, indeed, we demonstrate that
    it is possible to reconstruct every statistical property of chaotic fluid flow
    from UPOs.
acknowledgement: This research is supported by the Australian Research Council Discovery
  Project DP230102188 and the Ministerio de Ciencia, Innovación y Universidades (Agencia
  Estatal de Investigación, project nos PID 2020-114043 GB-I00 (MCIN/AEI/10.13039/501100011033)
  and PID 2023-150029NB-I00 (MCIN/AEI/10.13039/ 501100011033/FEDER, UE). B.W. and
  R.A.’s research has been funded by the European Union’s Horizon 2020 research and
  innovation programme (Marie Skłodowska-Curie grant agreement no. 101034413). R.A.
  has also been funded by the Austrian Science Fund (FWF) 10.55776/ESP1481224.
article_number: R2
article_processing_charge: Yes (in subscription journal)
article_type: original
author:
- first_name: Baoying
  full_name: Wang, Baoying
  id: df755ffe-735a-11ee-bb55-dff29d61d338
  last_name: Wang
  orcid: 0000-0002-6229-0336
- first_name: Roger
  full_name: Ayats López, Roger
  id: ab77522d-073b-11ed-8aff-e71b39258362
  last_name: Ayats López
  orcid: 0000-0001-6572-0621
- first_name: K.
  full_name: Deguchi, K.
  last_name: Deguchi
- first_name: A.
  full_name: Meseguer, A.
  last_name: Meseguer
- first_name: F.
  full_name: Mellibovsky, F.
  last_name: Mellibovsky
citation:
  ama: Wang B, Ayats López R, Deguchi K, Meseguer A, Mellibovsky F. Mathematically
    established chaos and forecast of statistics with recurrent patterns in Taylor-Couette
    flow. <i>Journal of Fluid Mechanics</i>. 2025;1011. doi:<a href="https://doi.org/10.1017/jfm.2025.151">10.1017/jfm.2025.151</a>
  apa: Wang, B., Ayats López, R., Deguchi, K., Meseguer, A., &#38; Mellibovsky, F.
    (2025). Mathematically established chaos and forecast of statistics with recurrent
    patterns in Taylor-Couette flow. <i>Journal of Fluid Mechanics</i>. Cambridge
    University Press. <a href="https://doi.org/10.1017/jfm.2025.151">https://doi.org/10.1017/jfm.2025.151</a>
  chicago: Wang, Baoying, Roger Ayats López, K. Deguchi, A. Meseguer, and F. Mellibovsky.
    “Mathematically Established Chaos and Forecast of Statistics with Recurrent Patterns
    in Taylor-Couette Flow.” <i>Journal of Fluid Mechanics</i>. Cambridge University
    Press, 2025. <a href="https://doi.org/10.1017/jfm.2025.151">https://doi.org/10.1017/jfm.2025.151</a>.
  ieee: B. Wang, R. Ayats López, K. Deguchi, A. Meseguer, and F. Mellibovsky, “Mathematically
    established chaos and forecast of statistics with recurrent patterns in Taylor-Couette
    flow,” <i>Journal of Fluid Mechanics</i>, vol. 1011. Cambridge University Press,
    2025.
  ista: Wang B, Ayats López R, Deguchi K, Meseguer A, Mellibovsky F. 2025. Mathematically
    established chaos and forecast of statistics with recurrent patterns in Taylor-Couette
    flow. Journal of Fluid Mechanics. 1011, R2.
  mla: Wang, Baoying, et al. “Mathematically Established Chaos and Forecast of Statistics
    with Recurrent Patterns in Taylor-Couette Flow.” <i>Journal of Fluid Mechanics</i>,
    vol. 1011, R2, Cambridge University Press, 2025, doi:<a href="https://doi.org/10.1017/jfm.2025.151">10.1017/jfm.2025.151</a>.
  short: B. Wang, R. Ayats López, K. Deguchi, A. Meseguer, F. Mellibovsky, Journal
    of Fluid Mechanics 1011 (2025).
date_created: 2025-05-25T22:16:52Z
date_published: 2025-05-13T00:00:00Z
date_updated: 2025-09-30T12:39:44Z
day: '13'
ddc:
- '530'
department:
- _id: BjHo
doi: 10.1017/jfm.2025.151
ec_funded: 1
external_id:
  isi:
  - '001486096600001'
file:
- access_level: open_access
  checksum: 899df5797844a9e811dffeebe8c05c8e
  content_type: application/pdf
  creator: dernst
  date_created: 2025-05-28T09:00:52Z
  date_updated: 2025-05-28T09:00:52Z
  file_id: '19754'
  file_name: 2025_JourFluidMech_Wang_Ayats.pdf
  file_size: 998754
  relation: main_file
  success: 1
file_date_updated: 2025-05-28T09:00:52Z
fulldoi: https://doi.org/10.1017/jfm.2025.151
has_accepted_license: '1'
intvolume: '      1011'
isi: 1
language:
- iso: eng
month: '05'
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'
- _id: 942a0200-16d5-11f0-9cad-f48ab22dfd1c
  grant_number: ESP 1481224
  name: Pattern Formation Mechanisms in Planar Shear Flows
publication: Journal of Fluid Mechanics
publication_identifier:
  eissn:
  - 1469-7645
  issn:
  - 0022-1120
publication_status: published
publisher: Cambridge University Press
quality_controlled: '1'
scopus_import: '1'
status: public
title: Mathematically established chaos and forecast of statistics with recurrent
  patterns in Taylor-Couette flow
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: 317138e5-6ab7-11ef-aa6d-ffef3953e345
volume: 1011
year: '2025'
...
---
OA_type: closed access
_id: '19736'
abstract:
- lang: eng
  text: 'The phytohormone auxin is a major signal coordinating growth and development
    in plants. The variety of its effects arises from its ability to form local auxin
    maxima and gradients within tissues, generated through directional cell-to-cell
    transport and elaborate metabolic control. These auxin distribution patterns instruct
    cells in a context-dependent manner to undergo predefined developmental transitions.
    In this Review, we discuss advances in auxin action at the level of homeostasis
    and signalling. We highlight key insights into the structural basis of PIN-mediated
    intercellular auxin transport and explore two novel non-transcriptional auxin
    signalling mechanisms: one involving intracellular Ca2+ transients and another
    involving cell-surface auxin perception that mediates global, ultrafast phosphorylation.
    Furthermore, we examine emerging evidence indicating the involvement of cyclic
    adenosine monophosphate as a second messenger in the transcriptional auxin response.
    Together, these recent developments in auxin research have profoundly deepened
    our understanding of the complex and diverse activities of auxin in plant growth
    and development.'
article_number: e113018
article_processing_charge: No
article_type: review
author:
- first_name: Steffen
  full_name: Vanneste, Steffen
  last_name: Vanneste
- first_name: Yuanrong
  full_name: Pei, Yuanrong
  id: 98605edc-6ce7-11ee-95f3-cc16b866efcd
  last_name: Pei
- first_name: Jiří
  full_name: Friml, Jiří
  id: 4159519E-F248-11E8-B48F-1D18A9856A87
  last_name: Friml
  orcid: 0000-0002-8302-7596
citation:
  ama: Vanneste S, Pei Y, Friml J. Mechanisms of auxin action in plant growth and
    development. <i>Nature Reviews Molecular Cell Biology</i>. 2025. doi:<a href="https://doi.org/10.1038/s41580-025-00851-2">10.1038/s41580-025-00851-2</a>
  apa: Vanneste, S., Pei, Y., &#38; Friml, J. (2025). Mechanisms of auxin action in
    plant growth and development. <i>Nature Reviews Molecular Cell Biology</i>. Springer
    Nature. <a href="https://doi.org/10.1038/s41580-025-00851-2">https://doi.org/10.1038/s41580-025-00851-2</a>
  chicago: Vanneste, Steffen, Yuanrong Pei, and Jiří Friml. “Mechanisms of Auxin Action
    in Plant Growth and Development.” <i>Nature Reviews Molecular Cell Biology</i>.
    Springer Nature, 2025. <a href="https://doi.org/10.1038/s41580-025-00851-2">https://doi.org/10.1038/s41580-025-00851-2</a>.
  ieee: S. Vanneste, Y. Pei, and J. Friml, “Mechanisms of auxin action in plant growth
    and development,” <i>Nature Reviews Molecular Cell Biology</i>. Springer Nature,
    2025.
  ista: Vanneste S, Pei Y, Friml J. 2025. Mechanisms of auxin action in plant growth
    and development. Nature Reviews Molecular Cell Biology., e113018.
  mla: Vanneste, Steffen, et al. “Mechanisms of Auxin Action in Plant Growth and Development.”
    <i>Nature Reviews Molecular Cell Biology</i>, e113018, Springer Nature, 2025,
    doi:<a href="https://doi.org/10.1038/s41580-025-00851-2">10.1038/s41580-025-00851-2</a>.
  short: S. Vanneste, Y. Pei, J. Friml, Nature Reviews Molecular Cell Biology (2025).
corr_author: '1'
date_created: 2025-05-25T22:16:57Z
date_published: 2025-05-19T00:00:00Z
date_updated: 2025-09-30T12:41:30Z
day: '19'
department:
- _id: JiFr
doi: 10.1038/s41580-025-00851-2
external_id:
  isi:
  - '001490500500001'
  pmid:
  - '40389696'
fulldoi: https://doi.org/10.1038/s41580-025-00851-2
isi: 1
language:
- iso: eng
month: '05'
oa_version: None
pmid: 1
publication: Nature Reviews Molecular Cell Biology
publication_identifier:
  eissn:
  - 1471-0080
  issn:
  - 1471-0072
publication_status: published
publisher: Springer Nature
quality_controlled: '1'
scopus_import: '1'
status: public
title: Mechanisms of auxin action in plant growth and development
type: journal_article
user_id: 317138e5-6ab7-11ef-aa6d-ffef3953e345
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
_id: '19737'
abstract:
- lang: eng
  text: For general large non–Hermitian random matrices X and deterministic normal
    deformations A, we prove that the local eigenvalue statistics of A + X close to
    the critical edge points of its spectrum are universal. This concludes the proof
    of the third and last remaining typical universality class for non–Hermitian random
    matrices (for normal deformations), after bulk and sharp edge universalities have
    been established in recent years.
acknowledgement: Open access funding provided by Institute of Science and Technology
  (IST Austria). Supported by ERC Advanced Grant “RMTBeyond” No. 101020331.
article_number: '050603'
article_processing_charge: Yes (via OA deal)
article_type: original
author:
- 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: Hong Chang
  full_name: Ji, Hong Chang
  last_name: Ji
citation:
  ama: Cipolloni G, Erdös L, Ji HC. Non–Hermitian spectral universality at critical
    points. <i>Probability Theory and Related Fields</i>. 2025. doi:<a href="https://doi.org/10.1007/s00440-025-01384-7">10.1007/s00440-025-01384-7</a>
  apa: Cipolloni, G., Erdös, L., &#38; Ji, H. C. (2025). Non–Hermitian spectral universality
    at critical points. <i>Probability Theory and Related Fields</i>. Springer Nature.
    <a href="https://doi.org/10.1007/s00440-025-01384-7">https://doi.org/10.1007/s00440-025-01384-7</a>
  chicago: Cipolloni, Giorgio, László Erdös, and Hong Chang Ji. “Non–Hermitian Spectral
    Universality at Critical Points.” <i>Probability Theory and Related Fields</i>.
    Springer Nature, 2025. <a href="https://doi.org/10.1007/s00440-025-01384-7">https://doi.org/10.1007/s00440-025-01384-7</a>.
  ieee: G. Cipolloni, L. Erdös, and H. C. Ji, “Non–Hermitian spectral universality
    at critical points,” <i>Probability Theory and Related Fields</i>. Springer Nature,
    2025.
  ista: Cipolloni G, Erdös L, Ji HC. 2025. Non–Hermitian spectral universality at
    critical points. Probability Theory and Related Fields., 050603.
  mla: Cipolloni, Giorgio, et al. “Non–Hermitian Spectral Universality at Critical
    Points.” <i>Probability Theory and Related Fields</i>, 050603, Springer Nature,
    2025, doi:<a href="https://doi.org/10.1007/s00440-025-01384-7">10.1007/s00440-025-01384-7</a>.
  short: G. Cipolloni, L. Erdös, H.C. Ji, Probability Theory and Related Fields (2025).
corr_author: '1'
date_created: 2025-05-25T22:16:59Z
date_published: 2025-01-01T00:00:00Z
date_updated: 2026-06-18T18:17:57Z
day: '01'
ddc:
- '500'
department:
- _id: LaEr
doi: 10.1007/s00440-025-01384-7
ec_funded: 1
external_id:
  isi:
  - '001493091900001'
fulldoi: https://doi.org/10.1007/s00440-025-01384-7
isi: 1
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.1007/s00440-025-01384-7
month: '01'
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: Non–Hermitian spectral universality at critical points
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2025'
...
---
OA_place: repository
OA_type: green
_id: '19738'
abstract:
- lang: eng
  text: "Garbling is a fundamental cryptographic primitive, with numerous theoretical
    and practical applications. Since the first construction by Yao (FOCS’82, ’86),
    a line of work has concerned itself with reducing the communication and computational
    complexity of that construction. One of the most efficient garbling schemes presently
    is the ‘Half Gates’ scheme by Zahur, Rosulek, and Evans (Eurocrypt’15). Despite
    its widespread adoption, the provable security of this scheme has been based on
    assumptions whose only instantiations are in idealized models. For example, in
    their original paper, Zahur, Rosulek, and Evans showed that hash functions satisfying
    a notion called circular correlation robustness (CCR) suffice for this task, and
    then proved that CCR secure hash functions can be instantiated in the random permutation
    model.\r\nIn this work, we show how to securely instantiate the Half Gates scheme
    in the standard model. To this end, we first show how this scheme can be securely
    instantiated given a (family of) weak CCR hash function, a notion that we introduce.
    Furthermore, we show how a weak CCR hash function can be used to securely instantiate
    other efficient garbling schemes, namely the ones by Rosulek and Roy (Crypto’21)
    and Heath (Eurocrypt’24). Thus we believe this notion to be of independent interest.\r\nFinally,
    we construct such weak CCR hash functions using indistinguishability obfuscation
    and one-way functions. The security proof of this construction constitutes our
    main technical contribution. While our construction is not practical, it serves
    as a proof of concept supporting the soundness of these garbling schemes, which
    we regard to be particularly important given the recent initiative by NIST to
    standardize garbling, and the optimizations in Half Gates being potentially adopted."
alternative_title:
- LNCS
article_processing_charge: No
author:
- first_name: Anasuya
  full_name: Acharya, Anasuya
  last_name: Acharya
- first_name: Karen
  full_name: Azari, Karen
  last_name: Azari
- first_name: Mirza Ahad
  full_name: Baig, Mirza Ahad
  id: 3EDE6DE4-AA5A-11E9-986D-341CE6697425
  last_name: Baig
- first_name: Dennis
  full_name: Hofheinz, Dennis
  last_name: Hofheinz
- first_name: Chethan
  full_name: Kamath, Chethan
  last_name: Kamath
citation:
  ama: 'Acharya A, Azari K, Baig MA, Hofheinz D, Kamath C. Securely instantiating
    ‘Half Gates’ garbling in the standard model. In: <i>28th IACR International Conference
    on Practice and Theory of Public-Key Cryptography</i>. Vol 15677. Springer Nature;
    2025:37-75. doi:<a href="https://doi.org/10.1007/978-3-031-91829-2_2">10.1007/978-3-031-91829-2_2</a>'
  apa: 'Acharya, A., Azari, K., Baig, M. A., Hofheinz, D., &#38; Kamath, C. (2025).
    Securely instantiating ‘Half Gates’ garbling in the standard model. In <i>28th
    IACR International Conference on Practice and Theory of Public-Key Cryptography</i>
    (Vol. 15677, pp. 37–75). Roros, Norway: Springer Nature. <a href="https://doi.org/10.1007/978-3-031-91829-2_2">https://doi.org/10.1007/978-3-031-91829-2_2</a>'
  chicago: Acharya, Anasuya, Karen Azari, Mirza Ahad Baig, Dennis Hofheinz, and Chethan
    Kamath. “Securely Instantiating ‘Half Gates’ Garbling in the Standard Model.”
    In <i>28th IACR International Conference on Practice and Theory of Public-Key
    Cryptography</i>, 15677:37–75. Springer Nature, 2025. <a href="https://doi.org/10.1007/978-3-031-91829-2_2">https://doi.org/10.1007/978-3-031-91829-2_2</a>.
  ieee: A. Acharya, K. Azari, M. A. Baig, D. Hofheinz, and C. Kamath, “Securely instantiating
    ‘Half Gates’ garbling in the standard model,” in <i>28th IACR International Conference
    on Practice and Theory of Public-Key Cryptography</i>, Roros, Norway, 2025, vol.
    15677, pp. 37–75.
  ista: 'Acharya A, Azari K, Baig MA, Hofheinz D, Kamath C. 2025. Securely instantiating
    ‘Half Gates’ garbling in the standard model. 28th IACR International Conference
    on Practice and Theory of Public-Key Cryptography. PKC: Public-Key Cryptography,
    LNCS, vol. 15677, 37–75.'
  mla: Acharya, Anasuya, et al. “Securely Instantiating ‘Half Gates’ Garbling in the Standard
    Model.” <i>28th IACR International Conference on Practice and Theory of Public-Key
    Cryptography</i>, vol. 15677, Springer Nature, 2025, pp. 37–75, doi:<a href="https://doi.org/10.1007/978-3-031-91829-2_2">10.1007/978-3-031-91829-2_2</a>.
  short: A. Acharya, K. Azari, M.A. Baig, D. Hofheinz, C. Kamath, in:, 28th IACR International
    Conference on Practice and Theory of Public-Key Cryptography, Springer Nature,
    2025, pp. 37–75.
conference:
  end_date: 2025-05-15
  location: Roros, Norway
  name: 'PKC: Public-Key Cryptography'
  start_date: 2025-05-12
date_created: 2025-05-25T22:17:02Z
date_published: 2025-05-05T00:00:00Z
date_updated: 2025-06-02T07:01:45Z
day: '05'
department:
- _id: KrPi
- _id: GradSch
doi: 10.1007/978-3-031-91829-2_2
fulldoi: https://doi.org/10.1007/978-3-031-91829-2_2
intvolume: '     15677'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://eprint.iacr.org/2025/281
month: '05'
oa: 1
oa_version: Preprint
page: 37-75
publication: 28th IACR International Conference on Practice and Theory of Public-Key
  Cryptography
publication_identifier:
  eissn:
  - 1611-3349
  isbn:
  - '9783031918285'
  issn:
  - 0302-9743
publisher: Springer Nature
quality_controlled: '1'
scopus_import: '1'
status: public
title: Securely instantiating ‘Half Gates’ garbling in the standard model
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 15677
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
_id: '19739'
abstract:
- lang: eng
  text: "Cooperative verification is gaining momentum in recent years. The usual setup
    in cooperative verification is that a verifier A is run with some pre-defined
    resources, and if it is not able to verify the program, the verification task
    is passed to a verifier B together with information learned about the program
    by verifier A, then the chain can continue to a verifier C, and so on. This scheme
    is static: tools run one after another in a fixed pre-defined order and fixed
    parameters and resource limits (the scheme may differ for properties to be analyzed,
    though).\r\n\r\nBubaak is a program analysis tool that allows to run multiple
    program verifiers in a dynamically changing combination of parallel and sequential
    portfolios. Bubaak starts the verification process by invoking an initial set
    of tasks; every task, when it is done (e.g., because of hitting a time limit or
    finishing its job), rewrites itself into one or more successor tasks. New tasks
    can be also spawned upon events generated by other tasks. This all happens dynamically
    based on the information gathered by finished and running tasks. During their
    execution, tasks that run in parallel can exchange (partial) verification artifacts,
    either directly or with Bubaak as an intermediary."
acknowledgement: This work was in part supported by the ERC-2020-AdG 10102009 grant,
  and in part by the German Research Foundation (DFG) - WE2290/13-2 (Coop2).
alternative_title:
- LNCS
article_processing_charge: No
author:
- first_name: Marek
  full_name: Chalupa, Marek
  id: 87e34708-d6c6-11ec-9f5b-9391e7be2463
  last_name: Chalupa
- first_name: Cedric
  full_name: Richter, Cedric
  last_name: Richter
citation:
  ama: 'Chalupa M, Richter C. BUBAAK: Dynamic cooperative verification. In: <i>31st
    International Conference on Tools and Algorithms for the Construction and Analysis
    of Systems</i>. Vol 15698. Springer Nature; 2025:212-216. doi:<a href="https://doi.org/10.1007/978-3-031-90660-2_14">10.1007/978-3-031-90660-2_14</a>'
  apa: 'Chalupa, M., &#38; Richter, C. (2025). BUBAAK: Dynamic cooperative verification.
    In <i>31st International Conference on Tools and Algorithms for the Construction
    and Analysis of Systems</i> (Vol. 15698, pp. 212–216). Hamilton, ON, Canada: Springer
    Nature. <a href="https://doi.org/10.1007/978-3-031-90660-2_14">https://doi.org/10.1007/978-3-031-90660-2_14</a>'
  chicago: 'Chalupa, Marek, and Cedric Richter. “BUBAAK: Dynamic Cooperative Verification.”
    In <i>31st International Conference on Tools and Algorithms for the Construction
    and Analysis of Systems</i>, 15698:212–16. Springer Nature, 2025. <a href="https://doi.org/10.1007/978-3-031-90660-2_14">https://doi.org/10.1007/978-3-031-90660-2_14</a>.'
  ieee: 'M. Chalupa and C. Richter, “BUBAAK: Dynamic cooperative verification,” in
    <i>31st International Conference on Tools and Algorithms for the Construction
    and Analysis of Systems</i>, Hamilton, ON, Canada, 2025, vol. 15698, pp. 212–216.'
  ista: 'Chalupa M, Richter C. 2025. BUBAAK: Dynamic cooperative verification. 31st
    International Conference on Tools and Algorithms for the Construction and Analysis
    of Systems. TACAS: Tools and Algorithms for the Construction and Analysis of Systems,
    LNCS, vol. 15698, 212–216.'
  mla: 'Chalupa, Marek, and Cedric Richter. “BUBAAK: Dynamic Cooperative Verification.”
    <i>31st International Conference on Tools and Algorithms for the Construction
    and Analysis of Systems</i>, vol. 15698, Springer Nature, 2025, pp. 212–16, doi:<a
    href="https://doi.org/10.1007/978-3-031-90660-2_14">10.1007/978-3-031-90660-2_14</a>.'
  short: M. Chalupa, C. Richter, in:, 31st International Conference on Tools and Algorithms
    for the Construction and Analysis of Systems, Springer Nature, 2025, pp. 212–216.
conference:
  end_date: 2025-05-08
  location: Hamilton, ON, Canada
  name: 'TACAS: Tools and Algorithms for the Construction and Analysis of Systems'
  start_date: 2025-05-03
corr_author: '1'
date_created: 2025-05-25T22:17:04Z
date_published: 2025-05-01T00:00:00Z
date_updated: 2025-06-02T07:21:41Z
day: '01'
ddc:
- '000'
department:
- _id: ToHe
doi: 10.1007/978-3-031-90660-2_14
ec_funded: 1
file:
- access_level: open_access
  checksum: 3f604f25dbe37383acb7f8308aad3ca6
  content_type: application/pdf
  creator: dernst
  date_created: 2025-06-02T07:10:35Z
  date_updated: 2025-06-02T07:10:35Z
  file_id: '19766'
  file_name: 2025_TACAS_Chalupa.pdf
  file_size: 259050
  relation: main_file
  success: 1
file_date_updated: 2025-06-02T07:10:35Z
fulldoi: https://doi.org/10.1007/978-3-031-90660-2_14
has_accepted_license: '1'
intvolume: '     15698'
language:
- iso: eng
month: '05'
oa: 1
oa_version: Published Version
page: 212-216
project:
- _id: 62781420-2b32-11ec-9570-8d9b63373d4d
  call_identifier: H2020
  grant_number: '101020093'
  name: Vigilant Algorithmic Monitoring of Software
publication: 31st International Conference on Tools and Algorithms for the Construction
  and Analysis of Systems
publication_identifier:
  eissn:
  - 1611-3349
  isbn:
  - '9783031906596'
  issn:
  - 0302-9743
publication_status: published
publisher: Springer Nature
quality_controlled: '1'
scopus_import: '1'
status: public
title: 'BUBAAK: Dynamic cooperative verification'
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: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 15698
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
_id: '19742'
abstract:
- lang: eng
  text: Statistical model checking estimates probabilities and expectations of interest
    in probabilistic system models by using random simulations. Its results come with
    statistical guarantees. However, many tools use unsound statistical methods that
    produce incorrect results more often than they claim. In this paper, we provide
    a comprehensive overview of tools and their correctness, as well as of sound methods
    available for estimating probabilities from the literature. For expected rewards,
    we investigate how to bound the path reward distribution to apply sound statistical
    methods for bounded distributions, of which we recommend the Dvoretzky-Kiefer-Wolfowitz
    inequality that has not been used in SMC so far. We prove that even reachability
    rewards can be bounded in theory, and formalise the concept of limit-PAC procedures
    for a practical solution. The modes SMC tool implements our methods and recommendations,
    which we use to experimentally confirm our results.
acknowledgement: This work was supported by the DFG through the Cluster of Excellence
  EXC 2050/1 (CeTI, project ID 390696704, as part of Germany’s Excellence Strategy)
  and the TRR 248 (see perspicuous-computing.science, project ID 389792660), by the
  European Union’s Horizon 2020 research and innovation programme under Marie Skłodowska-Curie
  grant agreements 101008233 (MISSION), 101034413 (IST-BRIDGE), and 101067199 (ProSVED),
  by the EU under NextGenerationEU projects D53D23008400006 (Smartitude) under MUR
  PRIN 2022 and PE00000014 (SERICS) under MUR PNRR, by the Interreg North Sea project
  STORM_SAFE, and by NWO VIDI grant VI.Vidi.223.110 (TruSTy).
alternative_title:
- LNCS
article_processing_charge: No
arxiv: 1
author:
- first_name: Carlos E.
  full_name: Budde, Carlos E.
  last_name: Budde
- first_name: Arnd
  full_name: Hartmanns, Arnd
  last_name: Hartmanns
- first_name: Tobias
  full_name: Meggendorfer, Tobias
  id: b21b0c15-30a2-11eb-80dc-f13ca25802e1
  last_name: Meggendorfer
  orcid: 0000-0002-1712-2165
- first_name: Maximilian
  full_name: Weininger, Maximilian
  id: 02ab0197-cc70-11ed-ab61-918e71f56881
  last_name: Weininger
- first_name: Patrick
  full_name: Wienhöft, Patrick
  last_name: Wienhöft
citation:
  ama: 'Budde CE, Hartmanns A, Meggendorfer T, Weininger M, Wienhöft P. Sound statistical
    model checking for probabilities and expected rewards. In: <i>31st International
    Conference on Tools and Algorithms for the Construction and Analysis of Systems</i>.
    Vol 15696. Springer Nature; 2025:167-190. doi:<a href="https://doi.org/10.1007/978-3-031-90643-5_9">10.1007/978-3-031-90643-5_9</a>'
  apa: 'Budde, C. E., Hartmanns, A., Meggendorfer, T., Weininger, M., &#38; Wienhöft,
    P. (2025). Sound statistical model checking for probabilities and expected rewards.
    In <i>31st International Conference on Tools and Algorithms for the Construction
    and Analysis of Systems</i> (Vol. 15696, pp. 167–190). Hamilton, ON, Canada: Springer
    Nature. <a href="https://doi.org/10.1007/978-3-031-90643-5_9">https://doi.org/10.1007/978-3-031-90643-5_9</a>'
  chicago: Budde, Carlos E., Arnd Hartmanns, Tobias Meggendorfer, Maximilian Weininger,
    and Patrick Wienhöft. “Sound Statistical Model Checking for Probabilities and
    Expected Rewards.” In <i>31st International Conference on Tools and Algorithms
    for the Construction and Analysis of Systems</i>, 15696:167–90. Springer Nature,
    2025. <a href="https://doi.org/10.1007/978-3-031-90643-5_9">https://doi.org/10.1007/978-3-031-90643-5_9</a>.
  ieee: C. E. Budde, A. Hartmanns, T. Meggendorfer, M. Weininger, and P. Wienhöft,
    “Sound statistical model checking for probabilities and expected rewards,” in
    <i>31st International Conference on Tools and Algorithms for the Construction
    and Analysis of Systems</i>, Hamilton, ON, Canada, 2025, vol. 15696, pp. 167–190.
  ista: 'Budde CE, Hartmanns A, Meggendorfer T, Weininger M, Wienhöft P. 2025. Sound
    statistical model checking for probabilities and expected rewards. 31st International
    Conference on Tools and Algorithms for the Construction and Analysis of Systems.
    TACAS: Tools and Algorithms for the Construction and Analysis of Systems, LNCS,
    vol. 15696, 167–190.'
  mla: Budde, Carlos E., et al. “Sound Statistical Model Checking for Probabilities
    and Expected Rewards.” <i>31st International Conference on Tools and Algorithms
    for the Construction and Analysis of Systems</i>, vol. 15696, Springer Nature,
    2025, pp. 167–90, doi:<a href="https://doi.org/10.1007/978-3-031-90643-5_9">10.1007/978-3-031-90643-5_9</a>.
  short: C.E. Budde, A. Hartmanns, T. Meggendorfer, M. Weininger, P. Wienhöft, in:,
    31st International Conference on Tools and Algorithms for the Construction and
    Analysis of Systems, Springer Nature, 2025, pp. 167–190.
conference:
  end_date: 2025-05-08
  location: Hamilton, ON, Canada
  name: 'TACAS: Tools and Algorithms for the Construction and Analysis of Systems'
  start_date: 2025-05-03
date_created: 2025-05-25T22:17:08Z
date_published: 2025-05-01T00:00:00Z
date_updated: 2025-06-02T09:45:41Z
day: '01'
ddc:
- '000'
department:
- _id: KrCh
doi: 10.1007/978-3-031-90643-5_9
ec_funded: 1
external_id:
  arxiv:
  - '2411.00559'
file:
- access_level: open_access
  checksum: d45856b503b1dd4f8f14c3566327225b
  content_type: application/pdf
  creator: dernst
  date_created: 2025-06-02T09:35:42Z
  date_updated: 2025-06-02T09:35:42Z
  file_id: '19770'
  file_name: 2025_TACAS_Budde.pdf
  file_size: 711271
  relation: main_file
  success: 1
file_date_updated: 2025-06-02T09:35:42Z
fulldoi: https://doi.org/10.1007/978-3-031-90643-5_9
has_accepted_license: '1'
intvolume: '     15696'
language:
- iso: eng
month: '05'
oa: 1
oa_version: Published Version
page: 167-190
project:
- _id: fc2ed2f7-9c52-11eb-aca3-c01059dda49c
  call_identifier: H2020
  grant_number: '101034413'
  name: 'IST-BRIDGE: International postdoctoral program'
publication: 31st International Conference on Tools and Algorithms for the Construction
  and Analysis of Systems
publication_identifier:
  eissn:
  - 1611-3349
  isbn:
  - '9783031906428'
  issn:
  - 0302-9743
publication_status: published
publisher: Springer Nature
quality_controlled: '1'
related_material:
  record:
  - id: '19769'
    relation: research_data
    status: public
scopus_import: '1'
status: public
title: Sound statistical model checking for probabilities and expected rewards
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: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 15696
year: '2025'
...
---
OA_place: repository
OA_type: green
_id: '19769'
abstract:
- lang: eng
  text: "Artifact to reproduce the experimental results presented in the article \"Sound
    Statistical Model Checking for Probabilities and Expected Rewards\" by Carlos
    E. Budde, Arnd Hartmanns, Tobias Meggendorfer, Maximilian Weininger, and Patrick
    Wienhöft (TACAS 2025).\r\n\r\nThe contents include all data and software (formal
    models, software tools, Python & bash scripts) used in the experimental evaluation
    presented in sections 3, 4, and 6 of the article. Detailed instructions on how
    to reproduce the results are bundled in the artifact."
article_processing_charge: No
author:
- first_name: Carlos
  full_name: Budde, Carlos
  last_name: Budde
- first_name: Arnd
  full_name: Hartmanns, Arnd
  last_name: Hartmanns
- first_name: Tobias
  full_name: Meggendorfer, Tobias
  id: b21b0c15-30a2-11eb-80dc-f13ca25802e1
  last_name: Meggendorfer
  orcid: 0000-0002-1712-2165
- first_name: Maximilian
  full_name: Weininger, Maximilian
  id: 02ab0197-cc70-11ed-ab61-918e71f56881
  last_name: Weininger
- first_name: Patrick
  full_name: Wienhöft, Patrick
  last_name: Wienhöft
citation:
  ama: Budde C, Hartmanns A, Meggendorfer T, Weininger M, Wienhöft P. Sound statistical
    model checking for probabilities and expected rewards (experimental reproduction
    package). 2025. doi:<a href="https://doi.org/10.5281/ZENODO.14602066">10.5281/ZENODO.14602066</a>
  apa: Budde, C., Hartmanns, A., Meggendorfer, T., Weininger, M., &#38; Wienhöft,
    P. (2025). Sound statistical model checking for probabilities and expected rewards
    (experimental reproduction package). Zenodo. <a href="https://doi.org/10.5281/ZENODO.14602066">https://doi.org/10.5281/ZENODO.14602066</a>
  chicago: Budde, Carlos, Arnd Hartmanns, Tobias Meggendorfer, Maximilian Weininger,
    and Patrick Wienhöft. “Sound Statistical Model Checking for Probabilities and
    Expected Rewards (Experimental Reproduction Package).” Zenodo, 2025. <a href="https://doi.org/10.5281/ZENODO.14602066">https://doi.org/10.5281/ZENODO.14602066</a>.
  ieee: C. Budde, A. Hartmanns, T. Meggendorfer, M. Weininger, and P. Wienhöft, “Sound
    statistical model checking for probabilities and expected rewards (experimental
    reproduction package).” Zenodo, 2025.
  ista: Budde C, Hartmanns A, Meggendorfer T, Weininger M, Wienhöft P. 2025. Sound
    statistical model checking for probabilities and expected rewards (experimental
    reproduction package), Zenodo, <a href="https://doi.org/10.5281/ZENODO.14602066">10.5281/ZENODO.14602066</a>.
  mla: Budde, Carlos, et al. <i>Sound Statistical Model Checking for Probabilities
    and Expected Rewards (Experimental Reproduction Package)</i>. Zenodo, 2025, doi:<a
    href="https://doi.org/10.5281/ZENODO.14602066">10.5281/ZENODO.14602066</a>.
  short: C. Budde, A. Hartmanns, T. Meggendorfer, M. Weininger, P. Wienhöft, (2025).
date_created: 2025-06-02T09:37:14Z
date_published: 2025-01-07T00:00:00Z
date_updated: 2025-06-02T09:45:41Z
day: '07'
ddc:
- '000'
department:
- _id: KrCh
doi: 10.5281/ZENODO.14602066
fulldoi: https://doi.org/10.5281/ZENODO.14602066
main_file_link:
- open_access: '1'
  url: https://doi.org/10.5281/ZENODO.14602066
month: '01'
oa: 1
oa_version: Published Version
publisher: Zenodo
related_material:
  record:
  - id: '19742'
    relation: used_in_publication
    status: public
status: public
title: Sound statistical model checking for probabilities and expected rewards (experimental
  reproduction package)
type: research_data_reference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2025'
...
---
DOAJ_listed: '1'
OA_place: publisher
OA_type: gold
_id: '19777'
abstract:
- lang: eng
  text: Snow cover is of key importance for water resources in high mountain Asia
    (HMA) and is expected to undergo extensive changes in a warming climate. Past
    studies have quantified snow cover changes with satellite products of relatively
    low spatial resolution (∼500 m) which are hindered by the steep topography of
    this mountain region. We derive snowlines from Sentinel-2 and Landsat 5, 7 and
    8 images, which, thanks to their higher spatial resolution, are less sensitive
    to the local topography. We calculate the snow line altitude (SLA) and its seasonality
    for all glacierized catchments of HMA and link these patterns to climate variables
    corrected for topographic biases. As such, the snowline changes provide a clear
    proxy for climatic changes. Our results highlight a strong spatial variability
    in mean SLA and in its seasonal changes, including across mountain chains and
    between the monsoon-dominated and the westerlies-dominated catchments. Over the
    period 1999–2019, the western regions of HMA (Pamir, Karakoram, Western Himalaya)
    have undergone increased snow coverage, expressed as seasonal SLA decrease, in
    spring and summer. This change is opposed to a widespread increase in SLA in autumn
    across the region, and especially the southeastern regions of HMA (Nyainqentanglha,
    Hengduan Shan, South–East Himalaya). Our results indicate that the diversity of
    seasonal snow dynamics across the region is controlled not by temperature or precipitation
    directly but by the timing and partitioning of solid precipitation. Decadal snowline
    changes (1999–2009 vs 2009–2019) seasonally precede temperature changes, suggesting
    that seasonal temperature changes in the Karakoram–Pamir and Eastern Nyainqentanglha
    regions may have responded to snow cover changes, rather than driving them.
acknowledgement: This work was supported by the SNSF (Science and Swiss National Science
  Foundation)-SSSTC (Sino-Swiss Science and Technology Cooperation) Project (IZLCZ0_189890)
  'Understanding snow, glacier and rivers response to climate in High Mountain Asia
  (ASCENT)', by the JSPS (Japan Society for the Promotion)-SNSF Bilateral Programmes
  project (HOPE, High-elevation precipitation in High Mountain Asia; Grant 183633),
  and the European Research Council (ERC) under the European Union's Horizon 2020
  research and innovation program (RAVEN, Rapid mass losses of debris-covered glaciers
  in High Mountain Asia; Grant 772751). Marin Kneib acknowledges funding from the
  SNSF Postdoc.Mobility program (Grant No. P500PN_210739).
article_number: '064039'
article_processing_charge: Yes
article_type: original
author:
- first_name: M.
  full_name: Bernat, M.
  last_name: Bernat
- first_name: E. S.
  full_name: Miles, E. S.
  last_name: Miles
- first_name: M.
  full_name: Kneib, M.
  last_name: Kneib
- first_name: K.
  full_name: Fujita, K.
  last_name: Fujita
- first_name: O.
  full_name: Sasaki, O.
  last_name: Sasaki
- first_name: Thomas
  full_name: Shaw, Thomas
  id: 3caa3f91-1f03-11ee-96ce-e0e553054d6e
  last_name: Shaw
  orcid: 0000-0001-7640-6152
- first_name: Francesca
  full_name: Pellicciotti, Francesca
  id: b28f055a-81ea-11ed-b70c-a9fe7f7b0e70
  last_name: Pellicciotti
  orcid: 0000-0002-5554-8087
citation:
  ama: Bernat M, Miles ES, Kneib M, et al. Precipitation phase drives seasonal and
    decadal snowline changes in high mountain Asia. <i>Environmental Research Letters</i>.
    2025;20(6). doi:<a href="https://doi.org/10.1088/1748-9326/adcf39">10.1088/1748-9326/adcf39</a>
  apa: Bernat, M., Miles, E. S., Kneib, M., Fujita, K., Sasaki, O., Shaw, T., &#38;
    Pellicciotti, F. (2025). Precipitation phase drives seasonal and decadal snowline
    changes in high mountain Asia. <i>Environmental Research Letters</i>. IOP Publishing.
    <a href="https://doi.org/10.1088/1748-9326/adcf39">https://doi.org/10.1088/1748-9326/adcf39</a>
  chicago: Bernat, M., E. S. Miles, M. Kneib, K. Fujita, O. Sasaki, Thomas Shaw, and
    Francesca Pellicciotti. “Precipitation Phase Drives Seasonal and Decadal Snowline
    Changes in High Mountain Asia.” <i>Environmental Research Letters</i>. IOP Publishing,
    2025. <a href="https://doi.org/10.1088/1748-9326/adcf39">https://doi.org/10.1088/1748-9326/adcf39</a>.
  ieee: M. Bernat <i>et al.</i>, “Precipitation phase drives seasonal and decadal
    snowline changes in high mountain Asia,” <i>Environmental Research Letters</i>,
    vol. 20, no. 6. IOP Publishing, 2025.
  ista: Bernat M, Miles ES, Kneib M, Fujita K, Sasaki O, Shaw T, Pellicciotti F. 2025.
    Precipitation phase drives seasonal and decadal snowline changes in high mountain
    Asia. Environmental Research Letters. 20(6), 064039.
  mla: Bernat, M., et al. “Precipitation Phase Drives Seasonal and Decadal Snowline
    Changes in High Mountain Asia.” <i>Environmental Research Letters</i>, vol. 20,
    no. 6, 064039, IOP Publishing, 2025, doi:<a href="https://doi.org/10.1088/1748-9326/adcf39">10.1088/1748-9326/adcf39</a>.
  short: M. Bernat, E.S. Miles, M. Kneib, K. Fujita, O. Sasaki, T. Shaw, F. Pellicciotti,
    Environmental Research Letters 20 (2025).
date_created: 2025-06-03T07:30:21Z
date_published: 2025-06-01T00:00:00Z
date_updated: 2025-09-30T12:43:11Z
day: '01'
ddc:
- '550'
department:
- _id: FrPe
doi: 10.1088/1748-9326/adcf39
external_id:
  isi:
  - '001493525600001'
file:
- access_level: open_access
  checksum: 84a8d895762f0ab4b30b34e7387b33c7
  content_type: application/pdf
  creator: dernst
  date_created: 2025-06-03T08:10:45Z
  date_updated: 2025-06-03T08:10:45Z
  file_id: '19781'
  file_name: 2025_EnvironmResearchLetters_Bernat.pdf
  file_size: 3604497
  relation: main_file
  success: 1
file_date_updated: 2025-06-03T08:10:45Z
fulldoi: https://doi.org/10.1088/1748-9326/adcf39
has_accepted_license: '1'
intvolume: '        20'
isi: 1
issue: '6'
language:
- iso: eng
month: '06'
oa: 1
oa_version: Published Version
publication: Environmental Research Letters
publication_identifier:
  eissn:
  - 1748-9326
publication_status: published
publisher: IOP Publishing
quality_controlled: '1'
related_material:
  record:
  - id: '19780'
    relation: research_data
    status: public
scopus_import: '1'
status: public
title: Precipitation phase drives seasonal and decadal snowline changes in high mountain
  Asia
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: 317138e5-6ab7-11ef-aa6d-ffef3953e345
volume: 20
year: '2025'
...
---
OA_place: repository
OA_type: green
_id: '19778'
abstract:
- lang: eng
  text: "A verifiable delay function VDF(x, T)->(y, π) maps an input x and time parameter
    T to an output y together with an efficiently verifiable proof π certifying that
    y was correctly computed. The function runs in T sequential steps, and it should
    not be possible to compute y much faster than that. The only known practical VDFs
    use sequential squaring in groups of unknown order as the sequential function,
    i.e., y = x^2^T. There are two constructions for the proof of exponentiation (PoE)
    certifying that y = x^2^T, with Wesolowski (Eurocrypt’19) having very short proofs,
    but they are more expensive to compute and the soundness relies on stronger assumptions
    than the PoE proposed by Pietrzak (ITCS’19).\r\nA recent application of VDFs by
    Arun, Bonneau and Clark (Asiacrypt’22) are short-lived proofs and signatures,
    which are proofs and signatures that are only sound for some time t, but after
    that can be forged by anyone. For this they rely on “watermarkable VDFs”, where
    the proof embeds a prover chosen watermark. To achieve stronger notions of proofs/signatures
    with reusable forgeability, they rely on “zero-knowledge VDFs”, where instead
    of the output y, one just proves knowledge of this output. The existing proposals
    for watermarkable and zero-knowledge VDFs all build on Wesolowski’s PoE, for the
    watermarkable VDFs there’s currently no security proof.\r\n\r\nIn this work we
    give the first constructions that transform any PoEs in hidden order groups into
    watermarkable VDFs and into zkVDFs, solving an open question by Arun et al. Unlike
    our watermarkable VDF, the zkVDF (required for reusable forgeability) is not very
    practical as the number of group elements in the proof is a security parameter.
    To address this, we introduce the notion of zero-knowledge proofs of sequential
    work (zkPoSW), a notion that relaxes zkVDFs by not requiring that the output is
    unique. We show that zkPoSW are sufficient to construct proofs or signatures with
    reusable forgeability, and construct efficient zkPoSW from any PoE, ultimately
    achieving short lived proofs and signatures that improve upon Arun et al.’s construction
    in several dimensions (faster forging times, arguably weaker assumptions).\r\nA
    key idea underlying our constructions is to not directly construct a (watermarked
    or zk) proof for y = x^2^T, but instead give a (watermarked or zk) proof for the
    more basic statement that \r\nx^l, y^l satisfy x^l = x ^r, y^l = y^r for some
    r, together with a normal PoE for y^l = (x^l)^2^T."
alternative_title:
- LNCS
article_processing_charge: No
author:
- first_name: Charlotte
  full_name: Hoffmann, Charlotte
  id: 0f78d746-dc7d-11ea-9b2f-83f92091afe7
  last_name: Hoffmann
  orcid: 0000-0003-2027-5549
- first_name: Krzysztof Z
  full_name: Pietrzak, Krzysztof Z
  id: 3E04A7AA-F248-11E8-B48F-1D18A9856A87
  last_name: Pietrzak
  orcid: 0000-0002-9139-1654
citation:
  ama: 'Hoffmann C, Pietrzak KZ. Watermarkable and zero-knowledge Verifiable Delay
    Functions from any proof of exponentiation. In: <i>28th IACR International Conference
    on Practice and Theory of Public-Key Cryptography</i>. Vol 15674. Springer Nature;
    2025:36-66. doi:<a href="https://doi.org/10.1007/978-3-031-91820-9_2">10.1007/978-3-031-91820-9_2</a>'
  apa: 'Hoffmann, C., &#38; Pietrzak, K. Z. (2025). Watermarkable and zero-knowledge
    Verifiable Delay Functions from any proof of exponentiation. In <i>28th IACR International
    Conference on Practice and Theory of Public-Key Cryptography</i> (Vol. 15674,
    pp. 36–66). Roros, Norway: Springer Nature. <a href="https://doi.org/10.1007/978-3-031-91820-9_2">https://doi.org/10.1007/978-3-031-91820-9_2</a>'
  chicago: Hoffmann, Charlotte, and Krzysztof Z Pietrzak. “Watermarkable and Zero-Knowledge
    Verifiable Delay Functions from Any Proof of Exponentiation.” In <i>28th IACR
    International Conference on Practice and Theory of Public-Key Cryptography</i>,
    15674:36–66. Springer Nature, 2025. <a href="https://doi.org/10.1007/978-3-031-91820-9_2">https://doi.org/10.1007/978-3-031-91820-9_2</a>.
  ieee: C. Hoffmann and K. Z. Pietrzak, “Watermarkable and zero-knowledge Verifiable
    Delay Functions from any proof of exponentiation,” in <i>28th IACR International
    Conference on Practice and Theory of Public-Key Cryptography</i>, Roros, Norway,
    2025, vol. 15674, pp. 36–66.
  ista: 'Hoffmann C, Pietrzak KZ. 2025. Watermarkable and zero-knowledge Verifiable
    Delay Functions from any proof of exponentiation. 28th IACR International Conference
    on Practice and Theory of Public-Key Cryptography. PKC: Public-Key Cryptography,
    LNCS, vol. 15674, 36–66.'
  mla: Hoffmann, Charlotte, and Krzysztof Z. Pietrzak. “Watermarkable and Zero-Knowledge
    Verifiable Delay Functions from Any Proof of Exponentiation.” <i>28th IACR International
    Conference on Practice and Theory of Public-Key Cryptography</i>, vol. 15674,
    Springer Nature, 2025, pp. 36–66, doi:<a href="https://doi.org/10.1007/978-3-031-91820-9_2">10.1007/978-3-031-91820-9_2</a>.
  short: C. Hoffmann, K.Z. Pietrzak, in:, 28th IACR International Conference on Practice
    and Theory of Public-Key Cryptography, Springer Nature, 2025, pp. 36–66.
conference:
  end_date: 2025-05-15
  location: Roros, Norway
  name: 'PKC: Public-Key Cryptography'
  start_date: 2025-05-12
corr_author: '1'
date_created: 2025-06-03T07:30:21Z
date_published: 2025-01-01T00:00:00Z
date_updated: 2026-04-16T09:11:09Z
day: '01'
department:
- _id: KrPi
- _id: GradSch
doi: 10.1007/978-3-031-91820-9_2
fulldoi: https://doi.org/10.1007/978-3-031-91820-9_2
intvolume: '     15674'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://ia.cr/2024/481
month: '01'
oa: 1
oa_version: Preprint
page: 36-66
publication: 28th IACR International Conference on Practice and Theory of Public-Key
  Cryptography
publication_identifier:
  eisbn:
  - '9783031918209'
  eissn:
  - 1611-3349
  isbn:
  - '9783031918193'
  issn:
  - 0302-9743
publication_status: published
publisher: Springer Nature
quality_controlled: '1'
related_material:
  record:
  - id: '20920'
    relation: dissertation_contains
    status: public
  - id: '20556'
    relation: dissertation_contains
    status: public
scopus_import: '1'
status: public
title: Watermarkable and zero-knowledge Verifiable Delay Functions from any proof
  of exponentiation
type: conference
user_id: ba8df636-2132-11f1-aed0-ed93e2281fdd
volume: 15674
year: '2025'
...
---
OA_type: closed access
_id: '19779'
abstract:
- lang: eng
  text: The transverse thermoelectric (Nernst) effect is a powerful probe for studying
    the electronic and structural properties of materials. In this study, we employ
    transverse thermoelectric measurements to investigate the ferroelectric distortion
    in the topological crystalline insulator (TCI) Pb0.60Sn0.40Te, a compound derived
    from PbTe and SnTe, known for their exceptional thermoelectric performance and
    distinct ferroelectric properties. By leveraging Nernst measurements, we provide
    direct evidence of ferroelectric distortion in this TCI, corroborated by Shubnikov–de
    Haas quantum oscillations that confirm the presence of two topologically nontrivial
    Fermi pockets. Density functional theory calculations show that these pockets
    originate from the L and T points in the Brillouin zone of the distorted structure
    within the TCI phase. Raman spectroscopy further identifies a structural phase
    transition below 50 K, consistent with the quantum oscillation observations. This
    observation is further substantiated by temperature-dependent synchrotron X-ray
    pair distribution function analysis and transmission electron microscopy, which
    confirm the local off-centering of cations at low temperature. These findings
    underscore the potential of transverse thermoelectric measurements in unveiling
    ferroelectric distortions and their role in modulating topological quantum states,
    opening new directions for research into the synergy between ferroelectricity
    and topological phases.
acknowledged_ssus:
- _id: EM-Fac
- _id: NanoFab
acknowledgement: P.N. thanks the IISER Bhopal for a fellowship. S.R.C. acknowledges
  generous funding support and CIF facility (PXRD) from IISER Bhopal. C.F. acknowledges
  the Deutsche Forschungsgemeinschaft (DFG) under SFB1143 (project no. 247310070),
  the Würzburg-Dresden Cluster of Excellence on Complexity and Topology in Quantum
  Matter─ct.qmat (EXC 2147, project no. 390858490) and the QUAST-FOR5249-449872909.
  P.L. and D.U. acknowledge support by DFG EXC-2123 QuantumFrontiers–390837967. The
  work of M.I. was funded by the European Union NextGenerationEU/PRTR-C17.I1, as well
  as by the IKUR Strategy under the collaboration agreement between Ikerbasque Foundation
  and DIPC on behalf of the Department of Education of the Basque Government. M.G.V.
  and M.I. thank support to the Spanish Ministerio de Ciencia e Innovacion (grant
  PID2022-142008NBI00). Y.Z. is supported by the Max Planck Partner lab from Max Planck
  Institute Chemical Physics of Solids. We acknowledge Petra III-DESY for the XPDF
  measurements and PXRD measurements. This research was supported by the Scientific
  Service Units (SSU) of ISTA Austria through resources provided by Electron Microscopy
  Facility (EMF) and the Nanofabrication Facility (NNF). ISTA acknowledges the Werner
  Siemens Foundation (WSS) for financial support.
article_processing_charge: No
article_type: original
author:
- first_name: Pranav
  full_name: Negi, Pranav
  last_name: Negi
- first_name: Bin
  full_name: He, Bin
  last_name: He
- first_name: Denis
  full_name: Ukolov, Denis
  last_name: Ukolov
- first_name: Sharona
  full_name: Horta, Sharona
  id: 03a7e858-01b1-11ec-8b71-99ae6c4a05bc
  last_name: Horta
- first_name: Krishnendu
  full_name: Maji, Krishnendu
  id: 76bc9e9f-ba0b-11ee-8184-90edabd17a58
  last_name: Maji
- first_name: Ning
  full_name: Mao, Ning
  last_name: Mao
- first_name: Nikolai
  full_name: Peshcherenko, Nikolai
  last_name: Peshcherenko
- first_name: Premakumar
  full_name: Yanda, Premakumar
  last_name: Yanda
- first_name: Mengyu
  full_name: Yao, Mengyu
  last_name: Yao
- first_name: Moinak
  full_name: Dutta, Moinak
  last_name: Dutta
- first_name: Iñigo
  full_name: Robredo, Iñigo
  last_name: Robredo
- first_name: Mikel
  full_name: Iraola, Mikel
  last_name: Iraola
- first_name: Maia G.
  full_name: Vergniory, Maia G.
  last_name: Vergniory
- first_name: Peter
  full_name: Lemmens, Peter
  last_name: Lemmens
- first_name: Yang
  full_name: Zhang, Yang
  last_name: Zhang
- first_name: Chandra
  full_name: Shekhar, Chandra
  last_name: Shekhar
- first_name: Maria
  full_name: Ibáñez, Maria
  id: 43C61214-F248-11E8-B48F-1D18A9856A87
  last_name: Ibáñez
  orcid: 0000-0001-5013-2843
- first_name: Claudia
  full_name: Felser, Claudia
  last_name: Felser
- first_name: Subhajit
  full_name: Roychowdhury, Subhajit
  last_name: Roychowdhury
citation:
  ama: Negi P, He B, Ukolov D, et al. Evidence of ferroelectric distortions in topological
    crystalline insulators via transverse thermoelectric measurements. <i>Journal
    of the American Chemical Society</i>. 2025;147(22):18704-18711. doi:<a href="https://doi.org/10.1021/jacs.5c01700">10.1021/jacs.5c01700</a>
  apa: Negi, P., He, B., Ukolov, D., Horta, S., Maji, K., Mao, N., … Roychowdhury,
    S. (2025). Evidence of ferroelectric distortions in topological crystalline insulators
    via transverse thermoelectric measurements. <i>Journal of the American Chemical
    Society</i>. American Chemical Society. <a href="https://doi.org/10.1021/jacs.5c01700">https://doi.org/10.1021/jacs.5c01700</a>
  chicago: Negi, Pranav, Bin He, Denis Ukolov, Sharona Horta, Krishnendu Maji, Ning
    Mao, Nikolai Peshcherenko, et al. “Evidence of Ferroelectric Distortions in Topological
    Crystalline Insulators via Transverse Thermoelectric Measurements.” <i>Journal
    of the American Chemical Society</i>. American Chemical Society, 2025. <a href="https://doi.org/10.1021/jacs.5c01700">https://doi.org/10.1021/jacs.5c01700</a>.
  ieee: P. Negi <i>et al.</i>, “Evidence of ferroelectric distortions in topological
    crystalline insulators via transverse thermoelectric measurements,” <i>Journal
    of the American Chemical Society</i>, vol. 147, no. 22. American Chemical Society,
    pp. 18704–18711, 2025.
  ista: Negi P, He B, Ukolov D, Horta S, Maji K, Mao N, Peshcherenko N, Yanda P, Yao
    M, Dutta M, Robredo I, Iraola M, Vergniory MG, Lemmens P, Zhang Y, Shekhar C,
    Ibáñez M, Felser C, Roychowdhury S. 2025. Evidence of ferroelectric distortions
    in topological crystalline insulators via transverse thermoelectric measurements.
    Journal of the American Chemical Society. 147(22), 18704–18711.
  mla: Negi, Pranav, et al. “Evidence of Ferroelectric Distortions in Topological
    Crystalline Insulators via Transverse Thermoelectric Measurements.” <i>Journal
    of the American Chemical Society</i>, vol. 147, no. 22, American Chemical Society,
    2025, pp. 18704–11, doi:<a href="https://doi.org/10.1021/jacs.5c01700">10.1021/jacs.5c01700</a>.
  short: P. Negi, B. He, D. Ukolov, S. Horta, K. Maji, N. Mao, N. Peshcherenko, P.
    Yanda, M. Yao, M. Dutta, I. Robredo, M. Iraola, M.G. Vergniory, P. Lemmens, Y.
    Zhang, C. Shekhar, M. Ibáñez, C. Felser, S. Roychowdhury, Journal of the American
    Chemical Society 147 (2025) 18704–18711.
date_created: 2025-06-03T07:30:22Z
date_published: 2025-05-22T00:00:00Z
date_updated: 2025-12-30T08:32:19Z
day: '22'
department:
- _id: MaIb
doi: 10.1021/jacs.5c01700
external_id:
  isi:
  - '001493301300001'
  pmid:
  - '40402919'
fulldoi: https://doi.org/10.1021/jacs.5c01700
intvolume: '       147'
isi: 1
issue: '22'
language:
- iso: eng
month: '05'
oa_version: None
page: 18704-18711
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: Journal of the American Chemical Society
publication_identifier:
  eissn:
  - 1520-5126
  issn:
  - 0002-7863
publication_status: published
publisher: American Chemical Society
quality_controlled: '1'
scopus_import: '1'
status: public
title: Evidence of ferroelectric distortions in topological crystalline insulators
  via transverse thermoelectric measurements
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 147
year: '2025'
...
---
OA_place: repository
OA_type: green
_id: '19780'
abstract:
- lang: eng
  text: "This repository contains the data used for the study Precipitation phase
    drives seasonal and decadal snowline changes in high mountain Asia.\r\n\r\nThis
    study focuses on 4776 glacierized catchments across high mountain Asia (HMA).
    They are numbered from 0 to 4775. This code number is then used in all the products
    as their unique ID. "
acknowledgement: This work was supported by the SNSF (Science and Swiss National Science
  Foundation)-SSSTC (Sino-Swiss Science and Technology Cooperation) Project (IZLCZ0_189890)
  'Understanding snow, glacier and rivers response to climate in High Mountain Asia
  (ASCENT)', by the JSPS (Japan Society for the Promotion)-SNSF Bilateral Programmes
  project (HOPE, High-elevation precipitation in High Mountain Asia; Grant 183633),
  and the European Research Council (ERC) under the European Union's Horizon 2020
  research and innovation program (RAVEN, Rapid mass losses of debris-covered glaciers
  in High Mountain Asia; Grant 772751). Marin Kneib acknowledges funding from the
  SNSF Postdoc.Mobility program (Grant No. P500PN_210739).
article_processing_charge: No
author:
- first_name: M
  full_name: Bernat, M
  last_name: Bernat
citation:
  ama: Bernat M. Snow line altitude in high mountain Asia derived from satellite imagery
    (LS5, LS7, LS8 &#38; S2) between 1999 and 2019. 2025. doi:<a href="https://doi.org/10.5281/ZENODO.15223343">10.5281/ZENODO.15223343</a>
  apa: Bernat, M. (2025). Snow line altitude in high mountain Asia derived from satellite
    imagery (LS5, LS7, LS8 &#38; S2) between 1999 and 2019. Zenodo. <a href="https://doi.org/10.5281/ZENODO.15223343">https://doi.org/10.5281/ZENODO.15223343</a>
  chicago: Bernat, M. “Snow Line Altitude in High Mountain Asia Derived from Satellite
    Imagery (LS5, LS7, LS8 &#38; S2) between 1999 and 2019.” Zenodo, 2025. <a href="https://doi.org/10.5281/ZENODO.15223343">https://doi.org/10.5281/ZENODO.15223343</a>.
  ieee: M. Bernat, “Snow line altitude in high mountain Asia derived from satellite
    imagery (LS5, LS7, LS8 &#38; S2) between 1999 and 2019.” Zenodo, 2025.
  ista: Bernat M. 2025. Snow line altitude in high mountain Asia derived from satellite
    imagery (LS5, LS7, LS8 &#38; S2) between 1999 and 2019, Zenodo, <a href="https://doi.org/10.5281/ZENODO.15223343">10.5281/ZENODO.15223343</a>.
  mla: Bernat, M. <i>Snow Line Altitude in High Mountain Asia Derived from Satellite
    Imagery (LS5, LS7, LS8 &#38; S2) between 1999 and 2019</i>. Zenodo, 2025, doi:<a
    href="https://doi.org/10.5281/ZENODO.15223343">10.5281/ZENODO.15223343</a>.
  short: M. Bernat, (2025).
contributor:
- contributor_type: project_member
  first_name: Evan Stuart
  last_name: Miles
- contributor_type: project_member
  first_name: Marin
  last_name: Kneib
- contributor_type: project_member
  first_name: Koji
  last_name: Fujita
- contributor_type: project_member
  first_name: Orie
  last_name: Sasaki
- contributor_type: project_member
  first_name: Thomas
  id: 3caa3f91-1f03-11ee-96ce-e0e553054d6e
  last_name: Shaw
  orcid: 0000-0001-7640-6152
- contributor_type: project_member
  first_name: Francesca
  id: b28f055a-81ea-11ed-b70c-a9fe7f7b0e70
  last_name: Pellicciotti
  orcid: 0000-0002-5554-8087
date_created: 2025-06-03T08:05:29Z
date_published: 2025-04-15T00:00:00Z
date_updated: 2025-09-30T12:43:10Z
day: '15'
ddc:
- '550'
department:
- _id: FrPe
doi: 10.5281/ZENODO.15223343
fulldoi: https://doi.org/10.5281/ZENODO.15223343
has_accepted_license: '1'
main_file_link:
- open_access: '1'
  url: https://doi.org/10.5281/ZENODO.15223343
month: '04'
oa: 1
oa_version: Published Version
publisher: Zenodo
related_material:
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status: public
title: Snow line altitude in high mountain Asia derived from satellite imagery (LS5,
  LS7, LS8 & S2) between 1999 and 2019
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: research_data_reference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2025'
...
---
OA_place: publisher
OA_type: hybrid
_id: '19783'
abstract:
- lang: eng
  text: We consider a local Cahn–Hilliard‐type model for tumor growth as well as a
    nonlocal model where, compared to the local system, the Laplacian in the equation
    for the chemical potential is replaced by a nonlocal operator. The latter is defined
    as a convolution integral with suitable kernels parametrized by a small parameter.
    For sufficiently smooth bounded domains in three dimensions, we prove convergence
    of weak solutions of the nonlocal model toward strong solutions of the local model
    together with convergence rates with respect to the small parameter. The proof
    is done via a Gronwall‐type argument and a convergence result with rates for the
    nonlocal integral operator toward the Laplacian due to Abels and Hurm.
acknowledgement: C. Hurm was partially supported by the Graduiertenkolleg 2339 IntComSin
  of the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation)–Project-ID
  321821685. M. Moser has received funding from the European Research Council (ERC)
  under the European Union's Horizon 2020 research and innovation programme (grant
  agreement No 948819). The support is gratefully acknowledged. Finally, we thank
  Daniel Böhme and Jonas Stange for careful proofreading. Open Access funding enabled
  and organized by Projekt DEAL.
article_number: e70003
article_processing_charge: Yes (via OA deal)
article_type: original
arxiv: 1
author:
- first_name: Christoph
  full_name: Hurm, Christoph
  last_name: Hurm
- first_name: Maximilian
  full_name: Moser, Maximilian
  id: a60047a9-da77-11eb-85b4-c4dc385ebb8c
  last_name: Moser
citation:
  ama: Hurm C, Moser M. Nonlocal‐to‐local convergence for a Cahn–Hilliard tumor growth
    model. <i>GAMM-Mitteilungen</i>. 2025;48(2). doi:<a href="https://doi.org/10.1002/gamm.70003">10.1002/gamm.70003</a>
  apa: Hurm, C., &#38; Moser, M. (2025). Nonlocal‐to‐local convergence for a Cahn–Hilliard
    tumor growth model. <i>GAMM-Mitteilungen</i>. Wiley. <a href="https://doi.org/10.1002/gamm.70003">https://doi.org/10.1002/gamm.70003</a>
  chicago: Hurm, Christoph, and Maximilian Moser. “Nonlocal‐to‐local Convergence for
    a Cahn–Hilliard Tumor Growth Model.” <i>GAMM-Mitteilungen</i>. Wiley, 2025. <a
    href="https://doi.org/10.1002/gamm.70003">https://doi.org/10.1002/gamm.70003</a>.
  ieee: C. Hurm and M. Moser, “Nonlocal‐to‐local convergence for a Cahn–Hilliard tumor
    growth model,” <i>GAMM-Mitteilungen</i>, vol. 48, no. 2. Wiley, 2025.
  ista: Hurm C, Moser M. 2025. Nonlocal‐to‐local convergence for a Cahn–Hilliard tumor
    growth model. GAMM-Mitteilungen. 48(2), e70003.
  mla: Hurm, Christoph, and Maximilian Moser. “Nonlocal‐to‐local Convergence for a
    Cahn–Hilliard Tumor Growth Model.” <i>GAMM-Mitteilungen</i>, vol. 48, no. 2, e70003,
    Wiley, 2025, doi:<a href="https://doi.org/10.1002/gamm.70003">10.1002/gamm.70003</a>.
  short: C. Hurm, M. Moser, GAMM-Mitteilungen 48 (2025).
date_created: 2025-06-03T08:58:01Z
date_published: 2025-06-01T00:00:00Z
date_updated: 2025-06-03T09:14:17Z
day: '01'
ddc:
- '510'
department:
- _id: JuFi
doi: 10.1002/gamm.70003
ec_funded: 1
external_id:
  arxiv:
  - '2402.13790'
file:
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  checksum: 6bac9d3e566b68519ae80ac8b0f41f20
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  creator: dernst
  date_created: 2025-06-03T09:12:22Z
  date_updated: 2025-06-03T09:12:22Z
  file_id: '19786'
  file_name: 2025_GAMM_Hurm.pdf
  file_size: 513741
  relation: main_file
  success: 1
file_date_updated: 2025-06-03T09:12:22Z
fulldoi: https://doi.org/10.1002/gamm.70003
has_accepted_license: '1'
intvolume: '        48'
issue: '2'
language:
- iso: eng
month: '06'
oa: 1
oa_version: Published Version
project:
- _id: 0aa76401-070f-11eb-9043-b5bb049fa26d
  call_identifier: H2020
  grant_number: '948819'
  name: Bridging Scales in Random Materials
publication: GAMM-Mitteilungen
publication_identifier:
  eissn:
  - 1522-2608
  issn:
  - 0936-7195
publication_status: published
publisher: Wiley
quality_controlled: '1'
scopus_import: '1'
status: public
title: Nonlocal‐to‐local convergence for a Cahn–Hilliard tumor growth model
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: 48
year: '2025'
...
---
OA_place: publisher
OA_type: diamond
_id: '19784'
abstract:
- lang: eng
  text: 'We present the Red Unknowns: Bright Infrared Extragalactic Survey (RUBIES)
    providing JWST/NIRSpec spectroscopy of red sources selected across ∼150 arcmin2
    from public JWST/NIRCam imaging in the UDS and EGS fields. The novel observing
    strategy of RUBIES offers a well-quantified selection function. The survey has
    been optimised to reach high (>70%) spectroscopic completeness for bright and
    red (F150W−F444W>2) sources that are very rare. To place these rare sources in
    context, we simultaneously observed a reference sample of the 2<z<7 galaxy population,
    sampling sources at a rate that is inversely proportional to their number density
    in the 3D parameter space of F444W magnitude, F150W−F444W colour, and photometric
    redshift. In total, RUBIES observed ∼3000 targets across 1<zphot<10 with both
    the PRISM and G395M dispersers and ∼1500 targets at zphot>3 using only the G395M
    disperser. The RUBIES data reveal a highly diverse population of red sources that
    span a broad redshift range (zspec∼1−9), with photometric redshift scatter and
    an outlier fraction that are three times higher than for similarly bright sources
    that are less red. This diversity is not apparent from the photometric spectral
    energy distributions (SEDs). Only spectroscopy reveals that the SEDs encompass
    a mixture of galaxies with dust-obscured star formation, extreme line emission,
    a lack of star formation indicating early quenching, and luminous active galactic
    nuclei. As a first demonstration of our broader selection function we compared
    the stellar masses and rest-frame U−V colours of the red sources and our reference
    sample. We find that the red sources are typically more massive (M*∼1010−11.5 M⊙)
    across all redshifts. However, we also find that the most massive systems span
    a wide range in U−V colour. We describe our data reduction procedure and data
    quality, and we publicly release the reduced RUBIES data and vetted spectroscopic
    redshifts of the first half of the survey through the DAWN JWST Archive.'
acknowledgement: 'We thank the CEERS and PRIMER teams for making their imaging data
  publicly available immediately. 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 programs
  #1345, #1837 #2234, #2279, #2514, #2750, #3990 and #4233. Support for program #4233
  was provided by NASA through a grant from the Space Telescope Science Institute,
  which is operated by the Association of Universities for Research in Astronomy,
  Inc., under NASA contract NAS 5-03127. REH acknowledges support by the German Aerospace
  Center (DLR) and the Federal Ministry for Economic Affairs and Energy (BMWi) through
  program 50OR2403 ‘RUBIES’. This research was supported by the International Space
  Science Institute (ISSI) in Bern, through ISSI International Team project #562.
  The Cosmic Dawn Center is funded by the Danish National Research Foundation (DNRF)
  under grant #140. This work has received funding from the Swiss State Secretariat
  for Education, Research and Innovation (SERI) under contract number MB22.00072,
  as well as from the Swiss National Science Foundation (SNSF) through project grant
  200020_207349. Support for this work for RPN was provided by NASA through the NASA
  Hubble Fellowship grant HST-HF2-51515.001-A awarded by the Space Telescope Science
  Institute, which is operated by the Association of Universities for Research in
  Astronomy, Incorporated, under NASA contract NAS5-26555. Open Access funding provided
  by Max Planck Society.'
article_number: A189
article_processing_charge: Yes
article_type: original
author:
- first_name: Anna
  full_name: de Graaff, Anna
  last_name: de Graaff
- first_name: Gabriel
  full_name: Brammer, Gabriel
  last_name: Brammer
- first_name: Andrea
  full_name: Weibel, Andrea
  last_name: Weibel
- first_name: Zach
  full_name: Lewis, Zach
  last_name: Lewis
- first_name: Michael V.
  full_name: Maseda, Michael V.
  last_name: Maseda
- first_name: Pascal A.
  full_name: Oesch, Pascal A.
  last_name: Oesch
- first_name: Rachel
  full_name: Bezanson, Rachel
  last_name: Bezanson
- first_name: Leindert A.
  full_name: Boogaard, Leindert A.
  last_name: Boogaard
- first_name: Nikko J.
  full_name: Cleri, Nikko J.
  last_name: Cleri
- first_name: Olivia R.
  full_name: Cooper, Olivia R.
  last_name: Cooper
- first_name: Rashmi
  full_name: Gottumukkala, Rashmi
  last_name: Gottumukkala
- first_name: Jenny E.
  full_name: Greene, Jenny E.
  last_name: Greene
- first_name: Michaela
  full_name: Hirschmann, Michaela
  last_name: Hirschmann
- first_name: Raphael E.
  full_name: Hviding, Raphael E.
  last_name: Hviding
- first_name: Harley
  full_name: Katz, Harley
  last_name: Katz
- first_name: Ivo
  full_name: Labbé, Ivo
  last_name: Labbé
- first_name: Joel
  full_name: Leja, Joel
  last_name: Leja
- 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: Ian
  full_name: McConachie, Ian
  last_name: McConachie
- first_name: Tim B.
  full_name: Miller, Tim B.
  last_name: Miller
- first_name: Rohan P.
  full_name: Naidu, Rohan P.
  last_name: Naidu
- first_name: Sedona H.
  full_name: Price, Sedona H.
  last_name: Price
- first_name: Hans-Walter
  full_name: Rix, Hans-Walter
  last_name: Rix
- first_name: David J.
  full_name: Setton, David J.
  last_name: Setton
- first_name: Katherine A.
  full_name: Suess, Katherine A.
  last_name: Suess
- first_name: Bingjie
  full_name: Wang, Bingjie
  last_name: Wang
- first_name: Katherine E.
  full_name: Whitaker, Katherine E.
  last_name: Whitaker
- first_name: Christina C.
  full_name: Williams, Christina C.
  last_name: Williams
citation:
  ama: 'de Graaff A, Brammer G, Weibel A, et al. RUBIES: A complete census of the
    bright and red distant universe with JWST/NIRSpec. <i>Astronomy &#38; Astrophysics</i>.
    2025;697. doi:<a href="https://doi.org/10.1051/0004-6361/202452186">10.1051/0004-6361/202452186</a>'
  apa: 'de Graaff, A., Brammer, G., Weibel, A., Lewis, Z., Maseda, M. V., Oesch, P.
    A., … Williams, C. C. (2025). RUBIES: A complete census of the bright and red
    distant universe with JWST/NIRSpec. <i>Astronomy &#38; Astrophysics</i>. EDP Sciences.
    <a href="https://doi.org/10.1051/0004-6361/202452186">https://doi.org/10.1051/0004-6361/202452186</a>'
  chicago: 'Graaff, Anna de, Gabriel Brammer, Andrea Weibel, Zach Lewis, Michael V.
    Maseda, Pascal A. Oesch, Rachel Bezanson, et al. “RUBIES: A Complete Census of
    the Bright and Red Distant Universe with JWST/NIRSpec.” <i>Astronomy &#38; Astrophysics</i>.
    EDP Sciences, 2025. <a href="https://doi.org/10.1051/0004-6361/202452186">https://doi.org/10.1051/0004-6361/202452186</a>.'
  ieee: 'A. de Graaff <i>et al.</i>, “RUBIES: A complete census of the bright and
    red distant universe with JWST/NIRSpec,” <i>Astronomy &#38; Astrophysics</i>,
    vol. 697. EDP Sciences, 2025.'
  ista: 'de Graaff A, Brammer G, Weibel A, Lewis Z, Maseda MV, Oesch PA, Bezanson
    R, Boogaard LA, Cleri NJ, Cooper OR, Gottumukkala R, Greene JE, Hirschmann M,
    Hviding RE, Katz H, Labbé I, Leja J, Matthee JJ, McConachie I, Miller TB, Naidu
    RP, Price SH, Rix H-W, Setton DJ, Suess KA, Wang B, Whitaker KE, Williams CC.
    2025. RUBIES: A complete census of the bright and red distant universe with JWST/NIRSpec.
    Astronomy &#38; Astrophysics. 697, A189.'
  mla: 'de Graaff, Anna, et al. “RUBIES: A Complete Census of the Bright and Red Distant
    Universe with JWST/NIRSpec.” <i>Astronomy &#38; Astrophysics</i>, vol. 697, A189,
    EDP Sciences, 2025, doi:<a href="https://doi.org/10.1051/0004-6361/202452186">10.1051/0004-6361/202452186</a>.'
  short: A. de Graaff, G. Brammer, A. Weibel, Z. Lewis, M.V. Maseda, P.A. Oesch, R.
    Bezanson, L.A. Boogaard, N.J. Cleri, O.R. Cooper, R. Gottumukkala, J.E. Greene,
    M. Hirschmann, R.E. Hviding, H. Katz, I. Labbé, J. Leja, J.J. Matthee, I. McConachie,
    T.B. Miller, R.P. Naidu, S.H. Price, H.-W. Rix, D.J. Setton, K.A. Suess, B. Wang,
    K.E. Whitaker, C.C. Williams, Astronomy &#38; Astrophysics 697 (2025).
date_created: 2025-06-03T08:59:52Z
date_published: 2025-05-19T00:00:00Z
date_updated: 2025-09-30T12:45:25Z
day: '19'
ddc:
- '520'
department:
- _id: JoMa
doi: 10.1051/0004-6361/202452186
external_id:
  isi:
  - '001490583400004'
file:
- access_level: open_access
  checksum: cccf44629f28535dde91f2ebdf38c054
  content_type: application/pdf
  creator: dernst
  date_created: 2025-06-03T09:25:49Z
  date_updated: 2025-06-03T09:25:49Z
  file_id: '19788'
  file_name: 2025_AstronomyAstrophysics_deGraaff.pdf
  file_size: 6874721
  relation: main_file
  success: 1
file_date_updated: 2025-06-03T09:25:49Z
fulldoi: https://doi.org/10.1051/0004-6361/202452186
has_accepted_license: '1'
intvolume: '       697'
isi: 1
language:
- iso: eng
month: '05'
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: 'RUBIES: A complete census of the bright and red distant universe with JWST/NIRSpec'
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: 317138e5-6ab7-11ef-aa6d-ffef3953e345
volume: 697
year: '2025'
...
---
OA_place: repository
OA_type: green
_id: '19791'
abstract:
- lang: eng
  text: Confinement is a prominent phenomenon in condensed matter and high-energy
    physics that has recently become the focus of quantum-simulation experiments of
    lattice gauge theories (LGTs). As such, a theoretical understanding of the effect
    of confinement on LGT dynamics is not only of fundamental importance, but can
    lend itself to upcoming experiments. Here, we show how confinement in a Z2 LGT
    can be locally avoided by proximity to a resonance between the fermion mass and
    the electric field strength. Furthermore, we show that this local deconfinement
    can become global for certain initial conditions, where information transport
    occurs over the entire chain. In addition, we show how this can lead to strong
    quantum many-body scarring starting in different initial states. Our findings
    provide deeper insights into the nature of confinement in Z2 LGTs and can be tested
    on current and near-term quantum devices.
acknowledgement: The authors are grateful to Fiona Burnell, Gaurav Gyawali, Zlatko
  Papi´c, Elliot Rosenberg, Pedram Roushan, and Michael Schecter for insightful discussions.
  J.-Y.D. acknowledges funding from the European Union’s Horizon 2020 research and
  innovation programme under the Marie Sk lodowska-Curie Grant Agreement No. 101034413.
  T.I. Acknowledges support from the National Science Foundation under Grant No. DMR-2143635.
  J.C.H. acknowledges support from the Emmy Noether Programme of the German Research
  Foundation (DFG) under grant no. HA 8206/1-1.
article_processing_charge: No
author:
- first_name: Jean-Yves Marc
  full_name: Desaules, Jean-Yves Marc
  id: 6c292945-a610-11ed-9eec-c3be1ad62a80
  last_name: Desaules
  orcid: 0000-0002-3749-6375
citation:
  ama: Desaules J-YM. Research Data for “Mass-Assisted Local Deconfinement in a Confined
    Z2 Lattice Gauge Theory.” 2025. doi:<a href="https://doi.org/10.15479/AT:ISTA:19791">10.15479/AT:ISTA:19791</a>
  apa: Desaules, J.-Y. M. (2025). Research Data for “Mass-Assisted Local Deconfinement
    in a Confined Z2 Lattice Gauge Theory.” Institute of Science and Technology Austria.
    <a href="https://doi.org/10.15479/AT:ISTA:19791">https://doi.org/10.15479/AT:ISTA:19791</a>
  chicago: Desaules, Jean-Yves Marc. “Research Data for ‘Mass-Assisted Local Deconfinement
    in a Confined Z2 Lattice Gauge Theory.’” Institute of Science and Technology Austria,
    2025. <a href="https://doi.org/10.15479/AT:ISTA:19791">https://doi.org/10.15479/AT:ISTA:19791</a>.
  ieee: J.-Y. M. Desaules, “Research Data for ‘Mass-Assisted Local Deconfinement in
    a Confined Z2 Lattice Gauge Theory.’” Institute of Science and Technology Austria,
    2025.
  ista: Desaules J-YM. 2025. Research Data for ‘Mass-Assisted Local Deconfinement
    in a Confined Z2 Lattice Gauge Theory’, Institute of Science and Technology Austria,
    <a href="https://doi.org/10.15479/AT:ISTA:19791">10.15479/AT:ISTA:19791</a>.
  mla: Desaules, Jean-Yves Marc. <i>Research Data for “Mass-Assisted Local Deconfinement
    in a Confined Z2 Lattice Gauge Theory.”</i> Institute of Science and Technology
    Austria, 2025, doi:<a href="https://doi.org/10.15479/AT:ISTA:19791">10.15479/AT:ISTA:19791</a>.
  short: J.-Y.M. Desaules, (2025).
contributor:
- contributor_type: researcher
  first_name: Jean-Yves Marc
  id: 6c292945-a610-11ed-9eec-c3be1ad62a80
  last_name: Desaules
  orcid: 0000-0002-3749-6375
- contributor_type: researcher
  first_name: Thomas
  last_name: Iadecola
- contributor_type: researcher
  first_name: Jad
  last_name: Halimeh
corr_author: '1'
date_created: 2025-06-04T14:30:22Z
date_published: 2025-06-04T00:00:00Z
date_updated: 2025-09-30T14:34:42Z
day: '04'
ddc:
- '530'
department:
- _id: MaSe
doi: 10.15479/AT:ISTA:19791
ec_funded: 1
file:
- access_level: open_access
  checksum: a613d73ee05f72a48ae9c97693bdd690
  content_type: application/zip
  creator: jdesaule
  date_created: 2025-06-04T14:26:29Z
  date_updated: 2025-06-04T14:26:29Z
  file_id: '19792'
  file_name: Data+Code.zip
  file_size: 31946898
  relation: main_file
  success: 1
- access_level: open_access
  checksum: 7df1549ce5e2f293d142ecf5e5b89489
  content_type: text/plain
  creator: jdesaule
  date_created: 2025-06-04T14:26:29Z
  date_updated: 2025-06-04T14:26:29Z
  file_id: '19793'
  file_name: readme.txt
  file_size: 13071
  relation: other
file_date_updated: 2025-06-04T14:26:29Z
fulldoi: https://doi.org/10.15479/AT:ISTA:19791
has_accepted_license: '1'
keyword:
- lattice gauge theories
- quantum many-body scars
- deconfinement
month: '06'
oa: 1
oa_version: Preprint
project:
- _id: fc2ed2f7-9c52-11eb-aca3-c01059dda49c
  call_identifier: H2020
  grant_number: '101034413'
  name: 'IST-BRIDGE: International postdoctoral program'
publisher: Institute of Science and Technology Austria
related_material:
  link:
  - relation: preprint
    url: https://arxiv.org/abs/2404.11645
  record:
  - id: '20327'
    relation: used_in_publication
    status: public
status: public
title: Research Data for "Mass-Assisted Local Deconfinement in a Confined Z2 Lattice
  Gauge Theory"
tmp:
  image: /images/cc_by_nc.png
  legal_code_url: https://creativecommons.org/licenses/by-nc/4.0/legalcode
  name: Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0)
  short: CC BY-NC (4.0)
type: research_data
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2025'
...
---
DOAJ_listed: '1'
OA_place: publisher
OA_type: gold
_id: '19794'
abstract:
- lang: eng
  text: Status epilepticus (SE), seizures lasting beyond five minutes, is a medical
    emergency commonly treated with benzodiazepines which enhance GABAA receptor (GABAAR)
    conductance. Despite widespread use, benzodiazepines fail in over one-third of
    patients, potentially due to seizure-induced disruption of neuronal chloride (Cl−)
    homeostasis. Understanding these changes at a network level is crucial for improving
    clinical translation. Here, we address this using a large-scale spiking neural
    network model incorporating Cl− dynamics, informed by clinical EEG and experimental
    slice recordings. Our simulations confirm that the GABAAR reversal potential (EGABA)
    dictates the pro- or anti-seizure effect of GABAAR conductance modulation, with
    high EGABA rendering benzodiazepines ineffective or excitatory. We show SE-like
    activity and EGABA depend non-linearly on Cl− extrusion efficacy and GABAAR conductance.
    Critically, cell-type specific manipulations reveal that pyramidal cell, not interneuron,
    Cl− extrusion predominantly determines the severity of SE activity and the response
    to simulated benzodiazepines. Leveraging these mechanistic insights, we develop
    a predictive framework mapping network states to Cl− extrusion capacity and GABAergic
    load, yielding a proposed decision-making strategy to guide therapeutic interventions
    based on initial treatment response. This work identifies pyramidal cell Cl− handling
    as a key therapeutic target and demonstrates the utility of biophysically detailed
    network models for optimising SE treatment protocols.
acknowledgement: 'The research leading to these results has received support from
  the National Research Foundation of South Africa, the Deutscher Akademischer Austauschdienst,
  NOMIS Foundation, NVIDIA Academic Program, the University of Cape Town, the Anna
  Mueller Grocholski Foundation, the Swiss National Science Foundation (SNSF: 208184),
  the Gabriel Foundation, a Wellcome Trust Seed Award (214042/Z/18/Z), the South African
  Medical Research Council and the FLAIR Fellowship Programme (FLR\R1\190829): a partnership
  between the African Academy of Sciences and the Royal Society funded by the UK Government''s
  Global Challenges Research Fund and a Wellcome Trust International Intermediate
  Fellowship (222968/Z/21/Z).'
article_number: '106966'
article_processing_charge: Yes
article_type: original
author:
- first_name: Christopher
  full_name: Currin, Christopher
  id: e8321fc5-3091-11eb-8a53-83f309a11ac9
  last_name: Currin
  orcid: 0000-0002-4809-5059
- first_name: Richard J.
  full_name: Burman, Richard J.
  last_name: Burman
- first_name: Tommaso
  full_name: Fedele, Tommaso
  last_name: Fedele
- first_name: Georgia
  full_name: Ramantani, Georgia
  last_name: Ramantani
- first_name: Richard E.
  full_name: Rosch, Richard E.
  last_name: Rosch
- first_name: Henning
  full_name: Sprekeler, Henning
  last_name: Sprekeler
- first_name: Joseph V.
  full_name: Raimondo, Joseph V.
  last_name: Raimondo
citation:
  ama: Currin C, Burman RJ, Fedele T, et al. Network models incorporating chloride
    dynamics predict optimal strategies for terminating status epilepticus. <i>Neurobiology
    of Disease</i>. 2025;212. doi:<a href="https://doi.org/10.1016/j.nbd.2025.106966">10.1016/j.nbd.2025.106966</a>
  apa: Currin, C., Burman, R. J., Fedele, T., Ramantani, G., Rosch, R. E., Sprekeler,
    H., &#38; Raimondo, J. V. (2025). Network models incorporating chloride dynamics
    predict optimal strategies for terminating status epilepticus. <i>Neurobiology
    of Disease</i>. Elsevier. <a href="https://doi.org/10.1016/j.nbd.2025.106966">https://doi.org/10.1016/j.nbd.2025.106966</a>
  chicago: Currin, Christopher, Richard J. Burman, Tommaso Fedele, Georgia Ramantani,
    Richard E. Rosch, Henning Sprekeler, and Joseph V. Raimondo. “Network Models Incorporating
    Chloride Dynamics Predict Optimal Strategies for Terminating Status Epilepticus.”
    <i>Neurobiology of Disease</i>. Elsevier, 2025. <a href="https://doi.org/10.1016/j.nbd.2025.106966">https://doi.org/10.1016/j.nbd.2025.106966</a>.
  ieee: C. Currin <i>et al.</i>, “Network models incorporating chloride dynamics predict
    optimal strategies for terminating status epilepticus,” <i>Neurobiology of Disease</i>,
    vol. 212. Elsevier, 2025.
  ista: Currin C, Burman RJ, Fedele T, Ramantani G, Rosch RE, Sprekeler H, Raimondo
    JV. 2025. Network models incorporating chloride dynamics predict optimal strategies
    for terminating status epilepticus. Neurobiology of Disease. 212, 106966.
  mla: Currin, Christopher, et al. “Network Models Incorporating Chloride Dynamics
    Predict Optimal Strategies for Terminating Status Epilepticus.” <i>Neurobiology
    of Disease</i>, vol. 212, 106966, Elsevier, 2025, doi:<a href="https://doi.org/10.1016/j.nbd.2025.106966">10.1016/j.nbd.2025.106966</a>.
  short: C. Currin, R.J. Burman, T. Fedele, G. Ramantani, R.E. Rosch, H. Sprekeler,
    J.V. Raimondo, Neurobiology of Disease 212 (2025).
corr_author: '1'
date_created: 2025-06-08T22:01:22Z
date_published: 2025-08-01T00:00:00Z
date_updated: 2025-12-30T08:36:36Z
day: '01'
ddc:
- '570'
department:
- _id: TiVo
doi: 10.1016/j.nbd.2025.106966
external_id:
  isi:
  - '001501576500001'
file:
- access_level: open_access
  checksum: abe215be676ed14e9a37fb78b6a5a610
  content_type: application/pdf
  creator: dernst
  date_created: 2025-12-30T08:35:41Z
  date_updated: 2025-12-30T08:35:41Z
  file_id: '20896'
  file_name: 2025_NeurobioDisease_Currin.pdf
  file_size: 7063352
  relation: main_file
  success: 1
file_date_updated: 2025-12-30T08:35:41Z
fulldoi: https://doi.org/10.1016/j.nbd.2025.106966
has_accepted_license: '1'
intvolume: '       212'
isi: 1
language:
- iso: eng
month: '08'
oa: 1
oa_version: Published Version
publication: Neurobiology of Disease
publication_identifier:
  eissn:
  - 1095-953X
  issn:
  - 0969-9961
publication_status: published
publisher: Elsevier
quality_controlled: '1'
scopus_import: '1'
status: public
title: Network models incorporating chloride dynamics predict optimal strategies for
  terminating status epilepticus
tmp:
  image: /images/cc_by_nc.png
  legal_code_url: https://creativecommons.org/licenses/by-nc/4.0/legalcode
  name: Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0)
  short: CC BY-NC (4.0)
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 212
year: '2025'
...
---
DOAJ_listed: '1'
OA_place: publisher
OA_type: gold
_id: '19796'
abstract:
- lang: eng
  text: "Motivation: Boolean networks are popular dynamical models of cellular processes
    in systems biology. Their attractors model phenotypes that arise from the interplay
    of key regulatory subcircuits. A succession diagram (SD) describes this interplay
    in a discrete analog of Waddington’s epigenetic attractor landscape that allows
    for fast identification of attractors and attractor control strategies. Efficient
    computational tools for studying SDs are essential for the understanding of Boolean
    attractor landscapes and connecting them to their biological functions.\r\nResults:
    We present a new approach to SD construction for asynchronously updated Boolean
    networks, implemented in the biologist’s Boolean attractor landscape mapper, biobalm.
    We compare biobalm to similar tools and find a substantial performance increase
    in SD construction, attractor identification, and attractor control. We perform
    the most comprehensive comparative analysis to date of the SD structure in experimentally-validated
    Boolean models of cell processes and random ensembles. We find that random models
    (including critical Kauffman networks) have relatively small SDs, indicating simple
    decision structures. In contrast, nonrandom models from the literature are enriched
    in extremely large SDs, indicating an abundance of decision points and suggesting
    the presence of complex Waddington landscapes in nature.\r\nAvailability and implementation:
    The tool biobalm is available online at https://github.com/jcrozum/biobalm. Further
    data, scripts for testing, analysis, and figure generation are available online
    at https://github.com/jcrozum/biobalm-analysis and in the reproducibility artefact
    at https://doi.org/10.5281/zenodo.13854760."
acknowledgement: V.-G.T. was supported by Institut Carnot STAR, Marseille, France.
  K.H.P. was supported by NSF grant MCB1715826 to Réka Albert. S.P. has received funding
  from the European Union’s Horizon 2020 Research and Innovation Programme under the
  Marie Sklodowska-Curie Grant Agreement No. 101034413. J.C.R. was supported by internal
  departmental funds provided by Luis M. Rocha. No funding bodies had any role in
  study design, analysis, decision to publish, or preparation of the article.
article_number: btaf280
article_processing_charge: Yes
article_type: original
author:
- first_name: Van Giang
  full_name: Trinh, Van Giang
  last_name: Trinh
- first_name: Kyu Hyong
  full_name: Park, Kyu Hyong
  last_name: Park
- first_name: Samuel
  full_name: Pastva, Samuel
  id: 07c5ea74-f61c-11ec-a664-aa7c5d957b2b
  last_name: Pastva
  orcid: 0000-0003-1993-0331
- first_name: Jordan C.
  full_name: Rozum, Jordan C.
  last_name: Rozum
citation:
  ama: Trinh VG, Park KH, Pastva S, Rozum JC. Mapping the attractor landscape of Boolean
    networks with biobalm. <i>Bioinformatics</i>. 2025;41(5). doi:<a href="https://doi.org/10.1093/bioinformatics/btaf280">10.1093/bioinformatics/btaf280</a>
  apa: Trinh, V. G., Park, K. H., Pastva, S., &#38; Rozum, J. C. (2025). Mapping the
    attractor landscape of Boolean networks with biobalm. <i>Bioinformatics</i>. Oxford
    University Press. <a href="https://doi.org/10.1093/bioinformatics/btaf280">https://doi.org/10.1093/bioinformatics/btaf280</a>
  chicago: Trinh, Van Giang, Kyu Hyong Park, Samuel Pastva, and Jordan C. Rozum. “Mapping
    the Attractor Landscape of Boolean Networks with Biobalm.” <i>Bioinformatics</i>.
    Oxford University Press, 2025. <a href="https://doi.org/10.1093/bioinformatics/btaf280">https://doi.org/10.1093/bioinformatics/btaf280</a>.
  ieee: V. G. Trinh, K. H. Park, S. Pastva, and J. C. Rozum, “Mapping the attractor
    landscape of Boolean networks with biobalm,” <i>Bioinformatics</i>, vol. 41, no.
    5. Oxford University Press, 2025.
  ista: Trinh VG, Park KH, Pastva S, Rozum JC. 2025. Mapping the attractor landscape
    of Boolean networks with biobalm. Bioinformatics. 41(5), btaf280.
  mla: Trinh, Van Giang, et al. “Mapping the Attractor Landscape of Boolean Networks
    with Biobalm.” <i>Bioinformatics</i>, vol. 41, no. 5, btaf280, Oxford University
    Press, 2025, doi:<a href="https://doi.org/10.1093/bioinformatics/btaf280">10.1093/bioinformatics/btaf280</a>.
  short: V.G. Trinh, K.H. Park, S. Pastva, J.C. Rozum, Bioinformatics 41 (2025).
corr_author: '1'
date_created: 2025-06-08T22:01:22Z
date_published: 2025-05-01T00:00:00Z
date_updated: 2025-09-30T12:46:33Z
day: '01'
ddc:
- '000'
department:
- _id: ToHe
doi: 10.1093/bioinformatics/btaf280
ec_funded: 1
external_id:
  isi:
  - '001493400600001'
  pmid:
  - '40327535'
file:
- access_level: open_access
  checksum: fa9d68aa0f5ce37598a623c9be936f09
  content_type: application/pdf
  creator: dernst
  date_created: 2025-06-10T07:07:45Z
  date_updated: 2025-06-10T07:07:45Z
  file_id: '19801'
  file_name: 2025_Bioinformatics_Trinh.pdf
  file_size: 2695801
  relation: main_file
  success: 1
file_date_updated: 2025-06-10T07:07:45Z
fulldoi: https://doi.org/10.1093/bioinformatics/btaf280
has_accepted_license: '1'
intvolume: '        41'
isi: 1
issue: '5'
language:
- iso: eng
month: '05'
oa: 1
oa_version: Published Version
pmid: 1
project:
- _id: fc2ed2f7-9c52-11eb-aca3-c01059dda49c
  call_identifier: H2020
  grant_number: '101034413'
  name: 'IST-BRIDGE: International postdoctoral program'
publication: Bioinformatics
publication_identifier:
  eissn:
  - 1367-4811
publication_status: published
publisher: Oxford University Press
quality_controlled: '1'
related_material:
  link:
  - relation: software
    url: https://github.com/jcrozum/biobalm
  record:
  - id: '19800'
    relation: research_data
    status: public
scopus_import: '1'
status: public
title: Mapping the attractor landscape of Boolean networks with biobalm
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: 317138e5-6ab7-11ef-aa6d-ffef3953e345
volume: 41
year: '2025'
...
---
OA_place: repository
OA_type: green
_id: '19798'
abstract:
- lang: eng
  text: In an  n×n  array filled with symbols, a transversal is a collection of entries
    with distinct rows, columns and symbols. In this note we show that if no symbol
    appears more than  βn  times, the array contains a transversal of size  (1−β/4−o(1))n
    . In particular, if the array is filled with  n  symbols, each appearing  n  times
    (an equi- n  square), we get transversals of size  (3/4−o(1))n. Moreover, our
    proof gives a deterministic algorithm with polynomial running time, that finds
    these transversals.
acknowledgement: "We are very grateful to Matthew Kwan and Alp Müyesser with whom
  we had many interesting discussions leading to the results of this note. We also
  thank the anonymous reviewers for their suggestions improving the presentation of
  this note.\r\n\r\nMA was supported by the Austrian Science Fund (FWF) [10.55776/ESP3863424]
  and by the European Union's Horizon 2020 research and innovation programme under
  the Marie Skłodowska-Curie grant—project number 101034413. PM was supported by the
  European Union's Horizon Europe Marie Skłodowska-Curie grant RAND-COMB-DESIGN—project
  number 101106032."
article_processing_charge: No
article_type: original
arxiv: 1
author:
- first_name: Michael
  full_name: Anastos, Michael
  id: 0b2a4358-bb35-11ec-b7b9-e3279b593dbb
  last_name: Anastos
- first_name: Patrick
  full_name: Morris, Patrick
  last_name: Morris
citation:
  ama: Anastos M, Morris P. A note on finding large transversals efficiently. <i>Journal
    of Combinatorial Designs</i>. 2025;33(9):338-342. doi:<a href="https://doi.org/10.1002/jcd.21990">10.1002/jcd.21990</a>
  apa: Anastos, M., &#38; Morris, P. (2025). A note on finding large transversals
    efficiently. <i>Journal of Combinatorial Designs</i>. Wiley. <a href="https://doi.org/10.1002/jcd.21990">https://doi.org/10.1002/jcd.21990</a>
  chicago: Anastos, Michael, and Patrick Morris. “A Note on Finding Large Transversals
    Efficiently.” <i>Journal of Combinatorial Designs</i>. Wiley, 2025. <a href="https://doi.org/10.1002/jcd.21990">https://doi.org/10.1002/jcd.21990</a>.
  ieee: M. Anastos and P. Morris, “A note on finding large transversals efficiently,”
    <i>Journal of Combinatorial Designs</i>, vol. 33, no. 9. Wiley, pp. 338–342, 2025.
  ista: Anastos M, Morris P. 2025. A note on finding large transversals efficiently.
    Journal of Combinatorial Designs. 33(9), 338–342.
  mla: Anastos, Michael, and Patrick Morris. “A Note on Finding Large Transversals
    Efficiently.” <i>Journal of Combinatorial Designs</i>, vol. 33, no. 9, Wiley,
    2025, pp. 338–42, doi:<a href="https://doi.org/10.1002/jcd.21990">10.1002/jcd.21990</a>.
  short: M. Anastos, P. Morris, Journal of Combinatorial Designs 33 (2025) 338–342.
date_created: 2025-06-08T22:01:23Z
date_published: 2025-09-01T00:00:00Z
date_updated: 2025-12-30T08:37:37Z
day: '01'
department:
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doi: 10.1002/jcd.21990
ec_funded: 1
external_id:
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page: 338-342
project:
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  name: Combinatorial Optimisation Problems on Sparse Random Graphs
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publication: Journal of Combinatorial Designs
publication_identifier:
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publication_status: published
publisher: Wiley
quality_controlled: '1'
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status: public
title: A note on finding large transversals efficiently
type: journal_article
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
volume: 33
year: '2025'
...
