@article{22167,
  abstract     = {Given a vertex-ordered graph G, the ordered Ramsey number
r<(G) is the minimum integer N such that every 2-coloring of the edges of
the complete ordered graph KN contains a monochromatic ordered copy of G.
Motivated by a similar question posed by Erd˝os and Graham [On partition
theorems for finite graphs, Infinite and finite sets (Colloq., Keszthely, 1973),
North-Holland, Amsterdam-London, pp. 515–527] in the unordered setting,
we study the problem of bounding the ordered Ramsey number of any ordered graph G with m edges and no isolated vertices. We prove that r<(G) ≤
e109√m(log log m)3/2
for any such G, which is tight up to the (log log m)3/2
factor in the exponent. As a corollary, we obtain the corresponding bound for
the oriented Ramsey number of a directed graph with m edges.},
  author       = {Bradač, Domagoj and Morawski, Patryk and Sudakov, Benny and Wigderson, Yuval},
  issn         = {1088-6826},
  journal      = {Proceedings of the American Mathematical Society},
  number       = {3},
  pages        = {927--942},
  publisher    = {American Mathematical Society},
  title        = {{Ordered Ramsey numbers of graphs with 𝑚 edges}},
  doi          = {10.1090/proc/17442},
  volume       = {154},
  year         = {2026},
}

@article{22183,
  abstract     = {A partition of a (hyper)graph is ε-homogeneous if the edge densities between almost all clusters are
either at most ε or at least 1 − ε. Suppose a 3-graph has the property that the link of every vertex has
an ε-homogeneous partition of size poly(1/ε). Does this guarantee that the 3-graph also has a small
homogeneous partition? Terry and Wolf proved that such a 3-graph has an ε-homogeneous partition
of size given by a wowzer-type function. Terry recently improved this to a double exponential bound,
and conjectured that this bound is tight. Our first result in this paper disproves this conjecture by
giving an improved (single) exponential bound, which is best possible. We further obtain an analogous
result for k-graphs of all uniformities k  3. The above problem is part of a much broader programme,
which seeks to understand the conditions under which a (hyper)graph has small ε-regular partitions.
While this problem is fairly well understood for graphs, the situation is (as always) much more
involved already for 3-graphs. For example, it is natural to ask if one can strengthen our first result
by only requiring each link to have ε-regular partitions of size poly(1/ε). Our second result shows that
surprisingly the answer is “no”, namely, a 3-graph might only have regular partitions of tower-type size,
even though the link of every vertex has an ε-regular partition of polynomial size.},
  author       = {Gishboliner, Lior and Shapira, Asaf and Wigderson, Yuval},
  issn         = {1687-0247},
  journal      = {International Mathematics Research Notices},
  number       = {4},
  publisher    = {Oxford University Press},
  title        = {{Is it easy to regularize a hypergraph with easy links?}},
  doi          = {10.1093/imrn/rnag018},
  volume       = {2026},
  year         = {2026},
}

@article{22184,
  abstract     = {Ramsey's theorem states that if N
 is sufficiently large, then no matter how one colors the edges among N
 vertices with two colors, there are always k
 vertices spanning edges in only one color. Given this theorem, it is natural to ask "how large is sufficiently large?" Ramsey's original proof showed that N=k!
 is sufficient, and five years later Erdős and Szekeres improved this bound to N=4^k
. And then progress stalled for almost 90 years.

In this survey, I present the history of the problem, and discuss some of the ideas used in the recent breakthrough of Campos–Griffiths–Morris–Sahasrabudhe, who proved that N=3.993^k
 is sufficient. In addition, I discuss the subsequent work of Balister, Bollobás, Campos, Griffiths, Hurley, Morris, Sahasrabudhe, and Tiba, who gave an alternative, and more conceptual, proof.},
  author       = {Wigderson, Yuval},
  issn         = {0303-1179},
  journal      = {Astérisque},
  pages        = {85--138},
  publisher    = {Societe Mathematique de France},
  title        = {{Exposé Bourbaki 1230 : Upper bounds on diagonal Ramsey numbers (after Campos, Griffiths, Morris, and Sahasrabudhe)}},
  doi          = {10.24033/ast.1255},
  year         = {2026},
}

@article{22218,
  abstract     = {Physiological void spaces exist at every scale of the human body, from organs to molecules, facilitating transport, signal propagation, and localized biochemical activity. Constriction of these spaces (e.g., arterial occlusion, fibrosis) highlights their importance, making their mimicry essential in tissue engineering (TE). This review examines four key strategies for introducing porosity into hydrogels across multiple length scales: templating, microgels, phase separation, and 3D printing. The first three methods enable the engineering of physiological environments at the nano‐ to micro‐scale, mimicking tissue‐ and extracellular matrix (ECM)‐level spaces. Templating involves embedding and removal of gas, liquid, or solid phases, leaving behind pores. Microgel annealing generates inherent interstitial voids. Liquid–liquid phase separation (LLPS) creates biphasic networks reminiscent of native ECM. The fourth approach, extrusion‐ and light‐based 3D printing techniques, enables the fabrication of larger‐scale spaces, such as luminal structures (e.g., vasculature, airways, and ducts). Combining these methods enables the creation of hierarchical architectures from the nano‐ to centimeter scale. The review also highlights Filamented Light (FLight) technology, which creates internal microstructural voids relevant to anisotropic tissues. This review offers insights into current methods and their convergence for generating biomimetic void spaces to meet the physiological demands of cells, tissues, and organs.},
  author       = {Puiggalí‐Jou, Anna and Hui, Isabel B. and Fernández-Rico, Carla and Zenobi‐Wong, Marcy},
  issn         = {1521-4095},
  journal      = {Advanced Materials},
  number       = {7},
  publisher    = {Wiley},
  title        = {{The space within: How architected voids promote tissue formation}},
  doi          = {10.1002/adma.202507385},
  volume       = {38},
  year         = {2026},
}

@article{22215,
  abstract     = {Elastic MicroPhase separation (EMPS) provides a simple route to create soft materials with homogeneous microstructures by leveraging the supersaturation of crosslinked polymer networks with liquids. At low supersaturation, network elasticity stabilizes a uniform mixture, but beyond a critical threshold, metastable microphase-separated domains emerge. While previous theories have focused on describing qualitative features about the size and morphology of these domains, they do not make quantitative predictions about EMPS phase diagrams. In this work, we extend Flory–Huggins theory to quantitatively capture EMPS phase diagrams by incorporating strain-stiffening effects. This model requires no fitting parameters and relies solely on independently measured solubility parameters and large-deformation mechanical responses. Our results confirm that strain-stiffening enables metastable microphase separation within the swelling equilibrium state and reveal why the microstructures can range from discrete droplets to bicontinuous networks. This works highlights the critical role of nonlinear elasticity in controlling phase-separated morphologies in polymer gels.},
  author       = {Fernández-Rico, Carla and Style, Robert W. and Heyden, Stefanie and Wang, Shichen and Olmsted, Peter D. and Dufresne, Eric R.},
  issn         = {1744-6848},
  journal      = {Soft Matter},
  number       = {2},
  pages        = {330--342},
  publisher    = {Royal Society of Chemistry},
  title        = {{Thermodynamics of microphase separation in a swollen, strain-stiffening polymer network}},
  doi          = {10.1039/d5sm00594a},
  volume       = {22},
  year         = {2026},
}

@article{21002,
  abstract     = {The Davenport–Heilbronn method is a version of the circle method that was developed for studying Diophantine inequalities in the paper (Davenport and Heilbronn, J. Lond. Math. Soc. (1) 21 (1946), 185–193). We discuss the main ideas in the paper, together with an account of the development of the subject in the intervening 80 years.},
  author       = {Browning, Timothy D},
  issn         = {1469-7750},
  journal      = {Journal of the London Mathematical Society},
  number       = {1},
  publisher    = {Wiley},
  title        = {{The Davenport–Heilbronn method: 80 years on}},
  doi          = {10.1112/jlms.70371},
  volume       = {113},
  year         = {2026},
}

@article{21385,
  abstract     = {We prove that the average size of a mixed character sum (math. formular) (for a suitable smooth function w) is on the order of √x for all irrational real θ satisfying a weak Diophantine condition, where χ is drawn from the family of Dirichlet characters modulo a large prime r and where x 6 r. In contrast, it was proved by Harper that the average size is o(√x) for rational θ. Certain quadratic Diophantine equations play a key role in the present paper. },
  author       = {Wang, Victor and Xu, Max},
  issn         = {1473-7124},
  journal      = {Proceedings of the Royal Society of Edinburgh: Section A Mathematics},
  pages        = {1--15},
  publisher    = {Cambridge University Press},
  title        = {{Average sizes of mixed character sums}},
  doi          = {10.1017/prm.2026.10123},
  year         = {2026},
}

@article{21242,
  abstract     = {We obtain an asymptotic formula for the number of integral solutions to a system of diagonal equations. We obtain an asymptotic formula for the number of solutions with variables restricted to smooth numbers as well. We improve the required number of variables compared to previous results by incorporating recent progress on Waring’s problem and the resolution of the main conjecture in Vinogradov’s mean value theorem.},
  author       = {Rome, Nick and Yamagishi, Shuntaro},
  issn         = {1945-5844},
  journal      = {Pacific Journal of Mathematics},
  number       = {1},
  pages        = {179--198},
  publisher    = {Mathematical Sciences Publishers},
  title        = {{Integral solutions to systems of diagonal equations}},
  doi          = {10.2140/pjm.2026.340.179},
  volume       = {340},
  year         = {2026},
}

@article{22318,
  abstract     = {Many intended uses of differential privacy involve a continual mechanism that is set up to run continuously
over a long period of time, making more statistical releases as either queries come in or the dataset is updated.
In this paper, we give the first general treatment of privacy against adaptive adversaries for mechanisms that
support dataset updates and a variety of queries, all arbitrarily interleaved. It also models a very general notion
of neighboring, that includes both event-level and user-level privacy. We prove several concurrent composition
theorems for continual mechanisms, which ensure privacy even when an adversary can interleave its queries
and dataset updates to the different composed mechanisms. Previous concurrent composition theorems for
differential privacy were only for the case when the dataset is static, with no adaptive updates. We also give
the first interactive and continual generalizations of the “parallel composition theorem” for noninteractive
differential privacy. Specifically, we show that the analogue of the noninteractive parallel composition theorem
holds if either there are no adaptive dataset updates or each of the composed mechanisms satisfies pure
differential privacy, but it fails to hold for composing approximately differentially private mechanisms with
dataset updates. Thus, we prove a tight new composition theorem for this case. In addition, we prove concurrent
filter compositions theorems for the scenarios in which the privacy parameters are adaptively chosen. We
extend these results to other measures of differential privacy, including Rényi DP and 𝑓 -DP.
We then formalize a set of general conditions on a continual mechanism M that runs multiple continual submechanisms such that the privacy guarantees of M follow directly using the above concurrent composition
theorems on the sub-mechanisms, without further privacy loss. This enables us to give a simpler and modular
privacy analysis of a recent continual histogram mechanism of Henzinger, Sricharan, and Steiner. In the
case of approximate DP, ours is the first proof that shows that its privacy holds against adaptive adversaries.
We also provide a framework that simplifies the analysis of local differential privacy when the protocol
includes multi-round server-user interactions. Using this result, we simplify the privacy analysis of the core
decomposition protocol of Dhulipala, Henzinger, Li, Liu, Sricharan, and Zhu [5].},
  author       = {Henzinger, Monika H and Safavi Hemami, Roodabeh and Vadhan, Salil},
  issn         = {2836-6573},
  journal      = {Proceedings of the ACM on Management of Data},
  keywords     = {differential privacy, concurrent composition, continual release, continual observation, data streaming, continual mechanisms, concurrent parallel composition, concurrent filter composition},
  number       = {2},
  pages        = {1--26},
  publisher    = {Association for Computing Machinery},
  title        = {{Concurrent composition for differentially private continual mechanisms}},
  doi          = {10.1145/3801895},
  volume       = {4},
  year         = {2026},
}

@inproceedings{22294,
  abstract     = {Modern computer systems store vast amounts of personal data, enabling advances in AI and ML but risking user privacy and trust. For privacy reasons, it is sometimes desired for an ML model to forget part of the data it was trained on. In this paper, we introduce a novel unlearning approach based on Forgetting Neural Networks (FNNs), a neuroscience-inspired architecture that explicitly encodes forgetting through multiplicative decay factors. While FNNs had previously been studied as a theoretical construct, we provide the first concrete implementation and demonstrate their effectiveness for targeted unlearning. We propose several variants with per-neuron forgetting factors, including rank-based assignments guided by activation levels, and evaluate them on MNIST and Fashion-MNIST benchmarks. Our method systematically removes information associated with forget sets while preserving performance on retained data. Membership inference attacks confirm the effectiveness of FNN-based unlearning in erasing information about the training data from the neural network. These results establish FNNs as a promising foundation for efficient and interpretable unlearning. },
  author       = {Hatua, Amartya and Nguyen, Trung and Cano Cordoba, Filip and Sung, Andrew},
  booktitle    = {Proceedings of the 18th International Conference on Agents and Artificial Intelligence},
  isbn         = {9789897587962},
  issn         = {2184-433X},
  keywords     = {Machine Unlearning, Neuroscience-Inspired Machine Learning, Membership Inference Attacks},
  location     = {Marbella, Spain},
  pages        = {1536--1546},
  publisher    = {SciTePress},
  title        = {{Machine unlearning using forgetting neural networks}},
  doi          = {10.5220/0014326500004052},
  volume       = {2},
  year         = {2026},
}

@article{22322,
  abstract     = {We study the problem of continually releasing statistics of an evolving dataset under differential privacy. In the event-level setting, we show the first polynomial lower bounds on the additive error for insertions-only graph problems such as maximum matching, degree histogram and k-core number computation. These results represent an exponential improvement on the polylogarithmic lower bounds of Fichtenberger, Henzinger and Ost [ESA 2021] for the former two problems, and are the first lower bounds in the continual release setting for the latter problem. Our results run counter to the intuition that the difference between insertions-only vs fully dynamic updates causes the gap between polylogarithmic and polynomial additive error. Indeed, we show that for estimating the size of the maximum matching or k-core number of a vertex, allowing small multiplicative approximations is what brings the additive error down to polylogarithmic. We complement these results with improved upper bounds on the additive error when no multiplicative approximation is allowed.
Beyond graphs, our techniques also show that polynomial additive error is unavoidable for the Simultaneous Norm Estimation problem in the insertions-only setting. When multiplicative approximations are allowed, we circumvent this lower bound by giving the first continual mechanism with polylogarithmic additive error under (1 + ζ) multiplicative approximations, for any ζ > 0, for estimating all monotone symmetric norms simultaneously.
In the item-level setting, we show polynomial lower bounds on the product of the multiplicative and the additive error of continual mechanisms for a large range of graph problems. To the best of our knowledge, these are the first lower bounds shown for any differentially private mechanism under continual release with multiplicative error. To obtain these results, we prove a new lower bound on the product of multiplicative and additive error for the 1-Way-Marginals problem, and give reductions from 1-Way-Marginals to our desired graph problems. This generalizes the prior results of Hardt and Talwar [STOC 2010] and Bun, Ullman and Vadhan [STOC 2014, SIAM J. Comput. 2018], who gave lower bounds on the additive error for the special case of mechanisms with no multiplicative error.},
  author       = {Aryanfard, Bardiya and Henzinger, Monika H and Saulpic, David and Sricharan, A. R.},
  issn         = {2836-6573},
  journal      = {Proceedings of the ACM on Management of Data},
  number       = {2},
  pages        = {1--27},
  publisher    = {Association for Computing Machinery},
  title        = {{Improved lower bounds for privacy under continual release}},
  doi          = {10.1145/3801903},
  volume       = {4},
  year         = {2026},
}

@article{22326,
  abstract     = {In many developmental systems, cells differentiate into a tissue by reading out morphogen concentration fields, a process fundamentally limited by noise. How much can the precision of this process be improved by nonlocal information, e.g., via cell-cell communication? Using a Bayes-optimal framework, we show that positional inference depends crucially on morphogen spatial correlations and on the "structural prior" that encodes the geometry of the cellular lattice performing the readout, thereby determining what a cell can reliably assume about the position of its neighbors when interpreting nonlocal morphogen signals. We derive upper bounds on positional information gain due to nonlocal readout and identify signal processing algorithms that approximate optimal positional inference, as well as simple chemical reaction schemes which implement such algorithms. Our theory suggests that correlational information can be exploited to significantly enhance developmental precision.},
  author       = {Zhang, Chen Y and Mateu Hoyos, Pablo and Brückner, David and Tkačik, Gašper},
  issn         = { 1079-7114},
  journal      = {Physical Review Letters},
  publisher    = {American Physical Society},
  title        = {{Nonlocal decoding of positional and correlational information during development}},
  doi          = {10.1103/mbjk-v4ym},
  volume       = {137},
  year         = {2026},
}

@article{22333,
  abstract     = {RNA polymerase II (Pol II) must be assembled in the cytoplasm before it enters the nucleus, where it transcribes protein-coding genes. Although transcription by Pol II is intensively studied, how this central multi-subunit enzyme is made and the role of dedicated assembly factors remains unclear. Here, we report the integrative structural analysis of a native human Pol II from the cytoplasm captured near the end of biogenesis. The complex contains Gdown1 and three biogenesis factors – RPAP2 and the critical small GTPases GPN1 and GPN3. Cryo-EM analysis of the complex reveals how Gdown1 and RPAP2 associate with Pol II and prevent the premature association of transcription factors. Further biochemical and cryo-EM analysis reveals how RPAP2 tethers GPN1–GPN3 to the complex and how the assembly of the RPAP2–GPN1–GPN3 complex is controlled by GTP hydrolysis. The combined results uncover a network of interactions that chaperone cytoplasmic Pol II to prevent aberrant interactions, reveal a molecular switch regulating biogenesis factor association, and suggest a general mechanism for the action of GPN-loop GTPase family of enzymes.},
  author       = {Hlavata, Annamaria and Neuditschko, Benjamin and Schellhaas, Ulla and Plaschka, Clemens and Herzog, Franz and Bernecky, Carrie A},
  issn         = {2041-1723},
  journal      = {Nature Communications},
  publisher    = {Springer Nature},
  title        = {{Structure of cytoplasmic RNA polymerase II}},
  doi          = {10.1038/s41467-026-75416-8},
  year         = {2026},
}

@article{21777,
  abstract     = {The advantageous characteristics attributed to the 19F nucleus have made it a popular target for nuclear magnetic resonance (NMR) once again in recent years. Aside from solution NMR, an increasing number of studies have been conducted applying solid-state magic-angle spinning (MAS) NMR to fluorine-labelled samples. Here, the high chemical shift anisotropy and strong dipolar couplings can be utilised to get structural insights into proteins and measure long distances. Despite increasing popularity and promising benefits, the sensitivity of biomolecular 19F MAS NMR often suffers from slow longitudinal T1 relaxation and therefore long recycle delays. In this work, we expand paramagnetic doping, an approach commonly used to reduce proton T1 relaxation times, to 19F-labelled biological samples. We study the effect of Gd(DTPA) and Gd(DTPA-BMA) on 19F T1 and T2, and 13C T1 and T2 relaxation in a [5-19F13C]-tryptophan-labelled protein via 19F-detected MAS NMR experiments. The observed paramagnetic relaxation enhancement substantially reduces measurement times of 19F MAS NMR experiments without compromising resolution. Additionally, we report the chemical shift assignments of all four fluorotryptophan signals in the 12×39 kDa-large protein TET2 using a mutagenesis approach.},
  author       = {Becker, Lea Marie and Toscano, Giorgia and Kapitonova, Anna and Singh, Rajkumar and Guillerm, Undina and Lichtenecker, Roman J. and Schanda, Paul},
  issn         = {2699-0016},
  journal      = {Magnetic Resonance},
  number       = {1},
  pages        = {29--37},
  publisher    = {Copernicus Publications},
  title        = {{Accelerated 19F biomolecular magic-angle spinning NMR with paramagnetic dopants}},
  doi          = {10.5194/mr-7-29-2026},
  volume       = {7},
  year         = {2026},
}

@unpublished{22359,
  abstract     = {We prove a mesoscopic central limit theorem for linear eigenvalue statistics of correlated Hermitian random matrices. The class considered here includes Wigner and Wigner-type matrices, as well as models whose entry correlations decay polynomially in the distance between index pairs. The proof combines a multivariate cumulant expansion with multi-resolvent local laws and a detailed analysis of the resulting variance kernel on the operator-level.},
  author       = {Lee, Jaehun and Erdös, László},
  keywords     = {Central limit theorem, universality, matrix Dyson equation, multi-resolvent local law},
  title        = {{Mesoscopic eigenvalue statistics for correlated random matrices}},
  doi          = {10.48550/arXiv.2607.05848},
  year         = {2026},
}

@article{22360,
  abstract     = {In this paper, we consider the rectangular random matrix
X =(xij ) ∈ RN×n whose entries are iid with tail P(|xij | >
t) ∼ t−α for some α> 0. We consider the regime N(n)/n →
a > 1 as n tends to infinity. Our main interest lies in the right
singular vector corresponding to the smallest singular value,
which we will refer to as the ``bottom singular vector'', denoted
by 𝔲. In this paper, we prove the following phase transition
regarding the localization length of 𝔲: when α< 2 the
localization length is O(n/ log n); when α> 2 the localization
length is of order n. Similar results hold for all right singular
vectors around the smallest singular value. The variational
definition of the bottom singular vector suggests that the
mechanism for this localization-delocalization transition when
α goes across 2 is intrinsically different from the one for the
top singular vector when α goes across 4},
  author       = {Bao, Zhigang and Lee, Jaehun and Xu, Xiaocong},
  issn         = {1096-0783},
  journal      = {Journal of Functional Analysis},
  number       = {4},
  publisher    = {Elsevier},
  title        = {{Phase transition for the bottom singular vector of rectangular random matrices}},
  doi          = {10.1016/j.jfa.2025.111266},
  volume       = {290},
  year         = {2026},
}

@article{22362,
  abstract     = {We present a systematic study of the environments of 25 luminous quasars at z > 6.5 from the ASPIRE program.
Using JWST/NIRCam wide-field slitless spectroscopy data, we identified 487 galaxies at 5.3 ≲ z ≲ 7.0 exhibiting
[O III] emission. Among these, 122 [O III] emitters lie within |Δvlos| < 1000 km s
−1 of the quasars, corresponding
to a ∼9.4-fold enhancement relative to the average galaxy density at other redshifts. Furthermore, we identified 16
[C II]-emitting galaxies at the quasar redshifts from Atacama Large Millimeter/submillimeter Array (ALMA) mosaic observations. A cross-correlation function analysis between quasars and [O III]+[C II] emitters yields a
cross-correlation length of r 8.68 h cMpc 0
QG
0.55 = +0.51 1
and an autocorrelation of r 15.76 h cMpc 0
QQ
2.70 = +2.48 1 ,
indicating that z ∼ 7 quasars reside in dark matter halos with
Mhalo 1012.27 0.26 M 0.21
= +
and have a quasar lifetime of
tQ 10 yr 7.05 1.01
0.95
= +
. Notably, the number of [O III]-emitting galaxies at quasar redshifts varies significantly from
field to field, ranging from 0 to 20, highlighting a diverse quasar environment. Remarkably, seven quasars trace
significant galaxy overdensities (i.e., protoclusters), with δgal > 5 within a volume of V ∼ 500 cMpc3
. We also
find that |Δvlos| increases rapidly toward smaller galaxy–quasar separations in protocluster fields, consistent with
galaxy kinematics around extremely massive halos in cosmological simulations. By combining JWST and ALMA
data, we reveal the complex and diverse environments of these early quasars, providing robust evidence that the
earliest luminous quasars are effective tracers of galaxy overdensities, albeit with substantial field-to-field
variation.},
  author       = {Wang, Feige and Champagne, Jaclyn B. and Huang, Jiamu and Yang, Jinyi and Hennawi, Joseph F. and Fan, Xiaohui and Zhang, Haowen and Costa, Tiago and Decarli, Roberto and Habouzit, Melanie and Sun, Fengwu and Bañados, Eduardo and Jin, Xiangyu and Kakiichi, Koki and Meyer, Romain A. and Wu, Yunjing and Belladitta, Silvia and Blecha, Laura and Bosman, Sarah E.I. and Cai, Zheng and Connor, Thomas and Davies, Frederick B. and Eilers, Anna Christina and Haiman, Zoltán and Jun, Hyunsung D. and Li, Mingyu and Li, Zihao and Liu, Weizhe and Lupi, Alessandro and Lyu, Jianwei and Mazzucchelli, Chiara and Onoue, Masafusa and Pizzati, Elia and Pudoka, Maria and Rojas-Ruiz, Sofía and Schindler, Jan Torge and Shen, Yue and Tee, Wei Leong and Trakhtenbrot, Benny and Trebitsch, Maxime and Vestergaard, Marianne and Volonteri, Marta and Walter, Fabian and Zhang, Huanian and Zou, Siwei},
  issn         = {15384357},
  journal      = {Astrophysical Journal},
  number       = {1},
  publisher    = {IOP Publishing},
  title        = {{ASPIRE: The environments and dark matter halos of luminous quasars in the epoch of reionization}},
  doi          = {10.3847/1538-4357/ae7bfa},
  volume       = {1006},
  year         = {2026},
}

@article{22364,
  abstract     = {Finding the first generation of (Population III or Pop III) stars is one of the most ambitious and exciting challenges of astrophysics. JWST opened concrete prospects for their detection during the Epoch of Reionization, where increasing evidence suggests that residual Pop III formation may persist, even within pristine pockets of high-mass halos, due to inhomogeneous enrichment. However, the identification of Pop III stars within globally enriched environments will be challenging. We investigate the detectability of a subdominant Pop III component in/around massive (M⋆ ≳ 10^9 M⊙) galaxies at z ≈ 6.5–9 from the dustyGadget cosmological simulation suite, and the confusion arising from second-generation (Pop II) stars in their surroundings. We find that young (≲1 Myr), massive (MIII ∼ 6 × 10^5 M⊙) Pop III clusters forming within these galaxy environments are responsible for strong HeII1640 line emission (LHeII1640 ≳ 10^41 erg ^s−1), which would be detectable with ≈10(50) hr of medium-resolution observations with NIRSpec/IFU at z ≈ 6(10). These bright luminosities cannot be produced by standard Pop II populations alone. On the other hand, the dominant Pop II component within massive “hybrid” Pop III hosts powers strong metal line emission (L[OIII]5007 ≳ 10^42 erg s^−1), indicating that the detection of metal lines alone cannot exclude the presence of Pop IIIs in high-z galaxy environments. We further discuss candidate selection strategies based on Lyα, Hα, and Hβ emission, and how spatially resolved observations may enable the detection of isolated, pristine pockets in the outskirts of massive halos.},
  author       = {Venditti, Alessandra and Graziani, Luca and Schneider, Raffaella and Bromm, Volker and Muñoz, Julian B. and Di Cesare, Claudia and Valiante, Rosa and Calabrò, Antonello and Maiolino, Roberto and Finkelstein, Steven L. and Parente, Massimiliano and Saggini, Matteo and Chisholm, John},
  issn         = {1538-4357},
  journal      = {The Astrophysical Journal},
  number       = {2},
  publisher    = {IOP Publishing},
  title        = {{Catching the nebular needle in a polluted haystack: Line-emission signatures from population III-forming pockets around massive galaxies at the end of reionization}},
  doi          = {10.3847/1538-4357/ae7b2c},
  volume       = {1005},
  year         = {2026},
}

@article{22369,
  abstract     = {The high-redshift progenitors of present-day galaxy clusters are believed to substantially contribute to the global star formation rate density and drive the large-scale reionisation of the Universe. Here we present a blind and unbiased search for and characterisation of galaxy overdensities during the reionisation epoch at redshifts z ∼ 5.5 − 7 based on rest-frame optical JWST/NIRCam grism spectroscopy of the Abell 2744 lensing field as part of the JWST All the Little Things (ALT) survey. Using a physically motivated, cosmological inference friends-of-friends (FoF) algorithm, we identified six galaxy overdensities, including five robust systems at z = 5.66–6.77. They are all characterised by total halo masses of Mhalo ≳ 1011 M⊙, inferred from a range of proxies. We find that the galaxy members in these overdense environments are on average less massive though equally metal-rich, and generally comprised of younger stellar populations, as indicated by their bluer spectral slopes and less prominent Balmer breaks compared to field galaxies at similar redshifts. Further, we use this novel rest-frame optical selection of galaxy proto-clusters to infer the fraction and 3D distribution of strong Lyman-α emitters (LAEs) and damped Lyman-α absorbers (DLAs) in the overdensity environments. We find that two out of the six galaxy overdensities have excess H I absorption compared to the field average, while the other four are consistent within their large scatter in density. These results present the first direct observational constraints on the tomography of the dense, neutral gas reservoirs in large-scale galaxy overdensities at z > 5 and highlight the limitations of pre-JWST searches for reionisation-era galaxy overdensities relying on the detection of strong LAEs alone.},
  author       = {Terp, Chamilla and Heintz, Kasper E. and Matthee, Jorryt J and Naidu, Rohan P. and Oesch, Pascal A. and Witten, Callum and Kashino, Daichi and Pollock, Clara L. and Di Cesare, Claudia and Torralba Torregrosa, Alberto},
  issn         = {1432-0746},
  journal      = {Astronomy & Astrophysics},
  publisher    = {EDP Sciences},
  title        = {{All the massive galaxy overdensities during reionisation: JWST rest-frame optical selection reveals young, chemically evolved galaxies embedded in dense, neutral gas at z > 5}},
  doi          = {10.1051/0004-6361/202659436},
  volume       = {710},
  year         = {2026},
}

@article{22361,
  abstract     = {Causal optimal transport and adapted Wasserstein distance have applications in different fields from optimization to mathematical finance and machine learning. The goal of this article is to provide equivalent formulations of these concepts in classic probabilistic language. In particular, we prove a Skorokhod representation theorem for adapted weak convergence, reformulate the equivalence of stochastic processes using Markovian lifts, and give an expression for the adapted Wasserstein distance based on representing processes on a common stochastic basis.},
  author       = {Beiglböck, Mathias and Pflügl, Susanne and Schrott, Stefan},
  issn         = {0304-4149},
  journal      = {Stochastic Processes and their Applications},
  publisher    = {Elsevier},
  title        = {{A probabilistic view on the adapted Wasserstein distance}},
  doi          = {10.1016/j.spa.2026.105032},
  volume       = {201},
  year         = {2026},
}

