HIGHLIGHTED ARTICLES

Minimal framework for optimizing vaccination protocols targeting highly mutable pathogens

Saeed Mahdisoltani, Pranav Murugan, Arup K. Chakraborty, and Mehran Kardar

Phys. Rev. E 110, 064137 (2024) - Published 19 December, 2024

This paper addresses the problem of designing optimum vaccination protocols that would elicit immune responses against the original and also mutant strains of a virus. The authors find that optimal vaccination protocols could be designed by ensuring that sequentially administered vaccine antigens are not too different at each time point.

Formation of motile cell clusters in heterogeneous model tumors: The role of cell-cell alignment

Quirine J. S. Braat, Cornelis Storm, and Liesbeth M. C. Janssen

Phys. Rev. E 110, 064401 (2024) - Published 3 December, 2024

Collectively migrating clusters of tumor cells can spread cancer more effectively than single cells, yet the mechanisms driving their formation remain unclear. Using a computational model, this study investigates how cell-cell alignment and the presence of nonmotile cells within a densely packed tumor environment impact clustering dynamics. The study offers new insights into the physical drivers of early-stage metastasis.

Using test particle sum rules to construct accurate functionals in classical density functional theory

Melih Gül, Roland Roth, and Robert Evans

Phys. Rev. E 110, 064115 (2024) - Published 10 December, 2024

Classical density functional theory, which describes the properties of classical many-particle systems, requires the use of suitable approximations. The authors introduce two statistical mechanical sum rules as constraints for making these approximations. They find that this approach improves upon certain earlier calculations, and could lead to more accurate predictions in general.

Full distribution of the ground-state energy of potentials with weak disorder

Naftali R. Smith

Phys. Rev. E 110, 064129 (2024) - Published 16 December, 2024

This work examines the effect of a disordered potential on the ground-state energy of a quantum particle, when the disorder in the potential is assumed to be weak. After developing a general method to calculate the distribution of the ground-state energy, the author discusses a simple one-dimensional example that shows evidence of a dynamical phase transition.

Double power-law universal scaling function for the distribution of waiting times in labquake catalogs

Honglian Li, Emma Valdés, and Eduard Vives

Phys. Rev. E 110, 064140 (2024) - Published 20 December, 2024

The authors investigate waiting times between avalanches in a self-organized critical system. They obtained long sequences of “labquake” experimental data from compression of charcoal samples of different hardness. The data could be described by two exponents, characterizing short and long waiting times, and a crossover parameter separating the two power laws. It would be interesting to investigate whether conclusions from the labquake data could be extrapolated to earthquakes.

Critical and tricritical behavior of the d=3 Blume-Capel model: Results from small-scale Monte Carlo simulations

Leïla Moueddene, Nikolaos G. Fytas, and Bertrand Berche

Phys. Rev. E 110, 064144 (2024) - Published 23 December, 2024

This work describes a Monte Carlo method that intentionally uses only small system sizes. By analyzing the behavior of the first Lee-Yang zero, the density of partition function zeros, and higher-order cumulants of the magnetization, the authors investigate the location of the critical and tricritical points of the three-dimensional Blume-Capel model. The approach produces accurate results with a reasonably low computational cost.

Mutual information and the encoding of contingency tables

Maximilian Jerdee, Alec Kirkley, and M. E. J. Newman

Phys. Rev. E 110, 064306 (2024) - Published 5 December, 2024

This study focuses on the comparison of labelings, such as network communities, using mutual information. It presents a novel, significantly tighter, bound on the information needed to encode contingency tables in several typical cases. The work makes a valuable contribution to the understanding of the information content of labelings and adds to the discussion on comparing clusters or communities.

Higher-order triadic percolation on random hypergraphs

Hanlin Sun and Ginestra Bianconi

Phys. Rev. E 110, 064315 (2024) - Published 19 December, 2024

This paper proposes a theoretical framework for investigating random hypergraphs with higher-order triadic interactions. The authors combine percolation theory with nonlinear dynamics and examine hypergraphs with a time-varying giant component. The work sheds light on dynamics of complex networks, such as climate networks, biological networks, and brain networks.

Swarm coherence mechanism for jellyfish

Erik Gengel, Zafrir Kuplik, Dror Angel, and Eyal Heifetz

Phys. Rev. E 110, 064406 (2024) - Published 23 December, 2024

This article addresses the question of the mechanism underlying formation of jellyfish swarms. The authors model jellyfish as active Brownian particles and consider behavioral reactions to environmental conditions and to self-induced stimuli. They numerically study how different parameters affect the system behavior. Their analysis suggests that jellyfish swarms are formed due to a mutual interplay of environment and behavior.

Direct manipulation of diffusion in colloidal glasses via controlled generation of quasi-particle-like defects

Yi-Di Wang, Chu Xiao, Anupam Kumar, Yun-Hong Shi, Chun-Shing Lee, King-Cheong Lam, Man-Kin Fung, Chor-Hoi Chan, Yuen-Hong Tsang, Bo Li, Chi-Hang Lam, and Cho-Tung Yip

Phys. Rev. E 110, 064603 (2024) - Published 10 December, 2024

Single microparticles are ejected from a glassy colloidal monolayer by laser tweezers, creating a soft spot or quasivoid in the glass. By using digital video microscopy, the authors monitor particle dynamics during and after particle ejection. The experimental work, supported by molecular dynamics simulations, provides evidence that quasivoids induce stringlike motions.

Impact of electron trapping on stimulated Raman scattering under incoherent broadband laser light in homogeneous plasma

David R. Blackman, Vladimir Tikhonchuk, Ondrej Klimo, and Stefan Weber

Phys. Rev. E 110, 065207 (2024) - Published 16 December, 2024

Broadband lasers have been suggested as a useful tool to suppress laser-plasma instabilities. However, this study shows that in the kinetic inflation regime broadband lasers are ineffective in suppressing backward stimulated Raman scattering (SRS). The role of electron trapping is pivotal in the persistence of SRS despite the increased laser bandwidth.

Producing entangled photon pairs and quantum squeezed states in plasmas

Kenan Qu and Nathaniel J. Fisch

Phys. Rev. E 110, 065211 (2024) - Published 20 December, 2024

This study addresses the question: how bright can one make a beam with nontrivial quantum correlations such as entanglement or squeezing? The authors consider a nonlinear mechanism in plasmas, namely four wave mixing to make polarization-entangled photon pairs. The discovery of stable high intensity “quantum light” in plasmas opens the door to remarkable applications, including enhanced x-ray imaging, quantum (sub-Rayleigh) lithography, and greatly improved quantum communication.

Zero-temperature Monte Carlo simulations of two-dimensional quantum spin glasses guided by neural network states

L. Brodoloni and S. Pilati

Phys. Rev. E 110, 065305 (2024) - Published 19 December, 2024

One major difficulty in applying quantum Monte Carlo to quantum spin glass models arises from the need to control the population of random walkers, which can lead to biases. Here, a projective quantum Monte Carlo method with neural-network-based guiding wave functions is used to eliminate population control bias. The study provides valuable insights into quantum spin glasses and demonstrates the effectiveness of neural network states in simulating frustrated quantum systems.

Anisotropic cage evolution in quasi-two-dimensional colloidal fluids

Noman Hanif Barbhuiya and Chandan K. Mishra

Phys. Rev. E 110, L062602 (2024) - Published 12 December, 2024

By observing colloidal fluids in confined spaces under a microscope, the authors report a surprising asymmetry in how each particle’s movement shapes its “cage”, the dynamic structure formed by neighboring particles around it. Contrary to expectations based on Brownian motion, the authors find that cages expand in an anisotropic, or directionally biased, manner. This new perspective on fluid dynamics opens a pathway to deeper insights into the subtle forces governing confined fluid flow and relaxation.

LETTERS

Statistical Physics

Kinetic equality for susceptibility and dynamical activity

Takaaki Monnai

Phys. Rev. E 110, L062101 (2024) - Published 3 December, 2024

Local interactions in active matter are reinforced by spatial structure

Eighdi Aung, James E. McClure, and Nicole Abaid

Phys. Rev. E 110, L062102 (2024) - Published 5 December, 2024

Nonstochastic quantum engine

André Neves Ribeiro

Phys. Rev. E 110, L062103 (2024) - Published 9 December, 2024

Finite-size Nagle-Kardar model: Casimir force

Daniel Dantchev, Nicholay Tonchev, and Joseph Rudnick

Phys. Rev. E 110, L062104 (2024) - Published 9 December, 2024

From an exact solution of dynamics in the vicinity of hard walls to extreme-value statistics of non-Markovian processes

Thibaut Arnoulx de Pirey

Phys. Rev. E 110, L062105 (2024) - Published 13 December, 2024

Emergent Nambu-Goldstone phase of Zq model from dynamics

Minghui Hu, Yanan Sun, Dajun Zhang, and Jian-Ping Lv

Phys. Rev. E 110, L062106 (2024) - Published 19 December, 2024

Geometrical interpretation of critical exponents

Henrique A. Lima, Edwin E. Mozo Luis, Ismael S. S. Carrasco, Alex Hansen, and Fernando A. Oliveira

Phys. Rev. E 110, L062107 (2024) - Published 20 December, 2024

Nonlinear Dynamics and Chaos

Effects of stickiness on the quantum states of strongly chaotic open systems

Miguel A. Prado Reynoso, Edson M. Signor, Sandra D. Prado, and Lea F. Santos

Phys. Rev. E 110, L062201 (2024) - Published 27 December, 2024

Networks and Complex Systems

Expected and unexpected routes to synchronization in a system of swarmalators

Steve J. Kongni, Thierry Njougouo, Patrick Louodop, Robert Tchitnga, Fernando F. Ferreira, and Hilda A. Cerdeira

Phys. Rev. E 110, L062301 (2024) - Published 2 December, 2024

Polymers

Scaling theory of fibrin polymerization

Sergey Panyukov

Phys. Rev. E 110, L062501 (2024) - Published 12 December, 2024

Colloids, Complex Fluids, and Active Matter

Depinning transition of self-propelled particles

Arthur V. Straube and Felix Höfling

Phys. Rev. E 110, L062601 (2024) - Published 5 December, 2024

Anisotropic cage evolution in quasi-two-dimensional colloidal fluids

Noman Hanif Barbhuiya and Chandan K. Mishra

Phys. Rev. E 110, L062602 (2024) - Published 12 December, 2024

By observing colloidal fluids in confined spaces under a microscope, the authors report a surprising asymmetry in how each particle’s movement shapes its “cage”, the dynamic structure formed by neighboring particles around it. Contrary to expectations based on Brownian motion, the authors find that cages expand in an anisotropic, or directionally biased, manner. This new perspective on fluid dynamics opens a pathway to deeper insights into the subtle forces governing confined fluid flow and relaxation.

Films and Interfaces

Brownian friction dynamics: Fluctuations in sliding distance

R. Xu, F. Zhou, and B. N. J. Persson

Phys. Rev. E 110, L062801 (2024) - Published 17 December, 2024

Solid Mechanics

Path differences between quasistatic and fatigue cracks in anisotropic media

Xinyuan Zhai, Thomas Corre, Ataollah Mesgarnejad, Alain Karma, and Véronique Lazarus

Phys. Rev. E 110, L063001 (2024) - Published 13 December, 2024

Fluid Dynamics

Rayleigh-Taylor instability in multiple finite-thickness fluid layers

Prashant Sharma

Phys. Rev. E 110, L063101 (2024) - Published 3 December, 2024

Plasma Physics

Increased neutron yield observed in indirect-drive double-shell experiments using high-energy x-ray preheat at the Shenguang laser facility

J. W. Li, J. Yan, C. S. Wu, Z. S. Dai, L. F. Wang, J. Qi, B. L. Chen, X. Zhang, G. Li, L. F. Jing, Z. J. Chen, W. Jiang, W. L. Shang, S. Y. Tu, Y. S. Liu, J. Zhang, J. M. Yang, W. H. Ye, W. D. Zheng, M. Wang, W. B. Pei, S. P. Zhu, and X. T. He

Phys. Rev. E 110, L063201 (2024) - Published 13 December, 2024

ARTICLES

Statistical Physics

Rationally independent free fermions with local hopping

Jonathon Riddell and Bruno Bertini

Phys. Rev. E 110, 064101 (2024) - Published 2 December, 2024

Data-driven physics-based modeling of pedestrian dynamics

Caspar A. S. Pouw, Geert G. M. van der Vleuten, Alessandro Corbetta, and Federico Toschi

Phys. Rev. E 110, 064102 (2024) - Published 2 December, 2024

Lattice-gas model of methane and carbon dioxide sI clathrate hydrates: A comprehensive study using analytical cluster approximation and Monte Carlo simulations

P. Longone, F. O. Sanchez-Varretti, F. Bulnes, and A. J. Ramirez-Pastor

Phys. Rev. E 110, 064103 (2024) - Published 3 December, 2024

Short-time large deviation of constrained random acceleration process

Hanshuang Chen, Lulu Tian, and Guofeng Li

Phys. Rev. E 110, 064104 (2024) - Published 3 December, 2024

Universal dynamics of a passive particle driven by Brownian motion

Urna Basu, P. L. Krapivsky, and Satya N. Majumdar

Phys. Rev. E 110, 064105 (2024) - Published 3 December, 2024

Stochastic parameter optimization analysis of dynamical quantum critical phenomena in the long-range transverse-field Ising chain

Sora Shiratani and Synge Todo

Phys. Rev. E 110, 064106 (2024) - Published 3 December, 2024

Charging a quantum battery mediated by parity-deformed fields

B. Mojaveri, R. Jafarzadeh Bahrbeig, and M. A. Fasihi

Phys. Rev. E 110, 064107 (2024) - Published 4 December, 2024

Anomalous distribution of magnetization in an Ising spin glass with correlated disorder

Hidetoshi Nishimori

Phys. Rev. E 110, 064108 (2024) - Published 4 December, 2024

Subdynamics in a many-body system of quantum particles

Victor F. Los

Phys. Rev. E 110, 064109 (2024) - Published 5 December, 2024

Run-and-tumble particle with saturating rates

Kavita Jain and Sakuntala Chatterjee

Phys. Rev. E 110, 064110 (2024) - Published 6 December, 2024

Negative large deviations of the front velocity of N-particle branching Brownian motion

Baruch Meerson and Pavel V. Sasorov

Phys. Rev. E 110, 064111 (2024) - Published 6 December, 2024

Multifractality and excited-state quantum phase transition in ferromagnetic spin-1 Bose-Einstein condensates

Zhen-Xia Niu and Qian Wang

Phys. Rev. E 110, 064112 (2024) - Published 9 December, 2024

Path integral approach for time-dependent Hamiltonians with applications to derivative pricing

Mark Stedman and Luca Capriotti

Phys. Rev. E 110, 064113 (2024) - Published 9 December, 2024

Rigidity-induced critical points

Y. Grabovsky and L. Truskinovsky

Phys. Rev. E 110, 064114 (2024) - Published 9 December, 2024

Using test particle sum rules to construct accurate functionals in classical density functional theory

Melih Gül, Roland Roth, and Robert Evans

Phys. Rev. E 110, 064115 (2024) - Published 10 December, 2024

Classical density functional theory, which describes the properties of classical many-particle systems, requires the use of suitable approximations. The authors introduce two statistical mechanical sum rules as constraints for making these approximations. They find that this approach improves upon certain earlier calculations, and could lead to more accurate predictions in general.

Neural units with time-dependent functionality

Stephen Whitelam

Phys. Rev. E 110, 064116 (2024) - Published 10 December, 2024

Boltzmann-Poisson equation with a central body: Analytical solutions in one and two dimensions

Pierre-Henri Chavanis

Phys. Rev. E 110, 064117 (2024) - Published 10 December, 2024

Thermodynamics and criticality of supersymmetric spin chains of Haldane-Shastry type

Federico Finkel and Artemio González-López

Phys. Rev. E 110, 064118 (2024) - Published 11 December, 2024

Trapping statistics in growing self-interacting self-avoiding walks: Square versus honeycomb lattices

Christophe Laforge, Hayk Mikayelyan, and Patrick Senet

Phys. Rev. E 110, 064120 (2024) - Published 11 December, 2024

Principal component analysis of absorbing state phase transitions

Cristiano Muzzi, Ronald Santiago Cortes, Devendra Singh Bhakuni, Asja Jelić, Andrea Gambassi, Marcello Dalmonte, and Roberto Verdel

Phys. Rev. E 110, 064121 (2024) - Published 12 December, 2024

α Annealing of ant colony optimization in the infinite-range Ising model

Shintaro Mori, Taiyo Shimizu, Masato Hisakado, and Kazuaki Nakayama

Phys. Rev. E 110, 064122 (2024) - Published 12 December, 2024

Spring pair method of finding saddle points using the minimum energy path as a compass

Gang Cui and Kai Jiang

Phys. Rev. E 110, 064123 (2024) - Published 12 December, 2024

Robustness and classical proxy of entanglement in variants of quantum walks

Christopher Mastandrea and Chih-Chun Chien

Phys. Rev. E 110, 064124 (2024) - Published 13 December, 2024

Behavior of the generalized Brownian motion in a parabolic potential: Effect of the field on the bath

Pedro J. Colmenares

Phys. Rev. E 110, 064125 (2024) - Published 13 December, 2024

Inference of entropy production for periodically driven systems

Pedro E. Harunari, Carlos E. Fiore, and Andre C. Barato

Phys. Rev. E 110, 064126 (2024) - Published 16 December, 2024

Templating aggregation

P. L. Krapivsky and S. Redner

Phys. Rev. E 110, 064127 (2024) - Published 16 December, 2024

Urban topology and dynamics can assess the importance of green areas

Jacopo Moi, Leonardo Chiesi, Gherardo Chirici, Saverio Francini, Costanza Borghi, Paolo Costa, Bianca Galmarini, and Guido Caldarelli

Phys. Rev. E 110, 064128 (2024) - Published 16 December, 2024

Full distribution of the ground-state energy of potentials with weak disorder

Naftali R. Smith

Phys. Rev. E 110, 064129 (2024) - Published 16 December, 2024

This work examines the effect of a disordered potential on the ground-state energy of a quantum particle, when the disorder in the potential is assumed to be weak. After developing a general method to calculate the distribution of the ground-state energy, the author discusses a simple one-dimensional example that shows evidence of a dynamical phase transition.

Criticality in the duration of the quasistationary state of the d-dimensional α-Heisenberg ferromagnet

Antonio Rodríguez, Fernando D. Nobre, and Constantino Tsallis

Phys. Rev. E 110, 064131 (2024) - Published 17 December, 2024

Condensate-induced organization of the mass profile and emergent power laws in the Takayasu aggregation model

Reya Negi, Rajiv G. Pereira, and Mustansir Barma

Phys. Rev. E 110, 064132 (2024) - Published 18 December, 2024

Effect of quenched heterogeneity on creep lifetimes of disordered materials

Juan Carlos Verano-Espitia, Jérôme Weiss, David Amitrano, Tero Mäkinen, and Mikko Alava

Phys. Rev. E 110, 064133 (2024) - Published 18 December, 2024

Self-assembled clusters of magnetically tilted dipoles

P. D. S. de Lima, A. Lyons, A. Irannezhad, J. M. de Araújo, S. Hutzler, and M. S. Ferreira

Phys. Rev. E 110, 064134 (2024) - Published 18 December, 2024

Dynamical structures in phase-separating nonreciprocal polar active mixtures

Kim L. Kreienkamp and Sabine H. L. Klapp

Phys. Rev. E 110, 064135 (2024) - Published 18 December, 2024

Nonequilibrium potential for linear energy harvester and work relationships

Bruno Combi, Martín E. Giuliano, Alejandro D. Sánchez, and Matías G. dell'Erba

Phys. Rev. E 110, 064136 (2024) - Published 18 December, 2024

Minimal framework for optimizing vaccination protocols targeting highly mutable pathogens

Saeed Mahdisoltani, Pranav Murugan, Arup K. Chakraborty, and Mehran Kardar

Phys. Rev. E 110, 064137 (2024) - Published 19 December, 2024

This paper addresses the problem of designing optimum vaccination protocols that would elicit immune responses against the original and also mutant strains of a virus. The authors find that optimal vaccination protocols could be designed by ensuring that sequentially administered vaccine antigens are not too different at each time point.

Nonuniversality for crossword puzzle percolation

Alexander K. Hartmann

Phys. Rev. E 110, 064138 (2024) - Published 19 December, 2024

Logarithmic finite-size scaling of the four-dimensional Ising model

Zhiyi Li, Tianning Xiao, Zongzheng Zhou, Sheng Fang, and Youjin Deng

Phys. Rev. E 110, 064139 (2024) - Published 20 December, 2024

Double power-law universal scaling function for the distribution of waiting times in labquake catalogs

Honglian Li, Emma Valdés, and Eduard Vives

Phys. Rev. E 110, 064140 (2024) - Published 20 December, 2024

The authors investigate waiting times between avalanches in a self-organized critical system. They obtained long sequences of “labquake” experimental data from compression of charcoal samples of different hardness. The data could be described by two exponents, characterizing short and long waiting times, and a crossover parameter separating the two power laws. It would be interesting to investigate whether conclusions from the labquake data could be extrapolated to earthquakes.

Self-organized critical dynamic on the Sierpinski carpet

Viviana Gómez and Gabriel Téllez

Phys. Rev. E 110, 064141 (2024) - Published 20 December, 2024

Scaling analysis of mosaic phase separation in Li-ion batteries

Debbie Zhuang and Martin Z. Bazant

Phys. Rev. E 110, 064142 (2024) - Published 20 December, 2024

Reliability of correlation-length measurements: A comparative study

Aleksandr V. Kukharskii and Sergey G. Abaimov

Phys. Rev. E 110, 064143 (2024) - Published 23 December, 2024

Critical and tricritical behavior of the d=3 Blume-Capel model: Results from small-scale Monte Carlo simulations

Leïla Moueddene, Nikolaos G. Fytas, and Bertrand Berche

Phys. Rev. E 110, 064144 (2024) - Published 23 December, 2024

This work describes a Monte Carlo method that intentionally uses only small system sizes. By analyzing the behavior of the first Lee-Yang zero, the density of partition function zeros, and higher-order cumulants of the magnetization, the authors investigate the location of the critical and tricritical points of the three-dimensional Blume-Capel model. The approach produces accurate results with a reasonably low computational cost.

Semi-Markov processes in open quantum systems. III. Large deviations of first-passage-time statistics

Fei Liu, Shihao Xia, and Shanhe Su

Phys. Rev. E 110, 064145 (2024) - Published 23 December, 2024

Kinetic theories of state- and generation-dependent cell populations

Mingtao Xia and Tom Chou

Phys. Rev. E 110, 064146 (2024) - Published 24 December, 2024

Partition sum of thermal, underconstrained systems

Cheng-Tai Lee and Matthias Merkel

Phys. Rev. E 110, 064147 (2024) - Published 24 December, 2024

Conditioning the complexity of random landscapes on marginal optima

Jaron Kent-Dobias

Phys. Rev. E 110, 064148 (2024) - Published 26 December, 2024

Defect versus defect: Stationary states of single-file marching in periodic landscapes with road blocks

Atri Goswami, Rohn Chatterjee, and Sudip Mukherjee

Phys. Rev. E 110, 064149 (2024) - Published 26 December, 2024

Prethermalization in aperiodically driven classical spin systems

Sajag Kumar and Sayan Choudhury

Phys. Rev. E 110, 064150 (2024) - Published 26 December, 2024

Learning entropy production from underdamped Langevin trajectories

Jinghao Lyu, Kyle J. Ray, and James P. Crutchfield

Phys. Rev. E 110, 064151 (2024) - Published 27 December, 2024

Path-integral approach to mutual information calculation for nonlinear channel with small dispersion at large signal-to-noise ratio

A. V. Reznichenko and V. O. Guba

Phys. Rev. E 110, 064152 (2024) - Published 30 December, 2024

Current fluctuations in the Dyson gas

Rahul Dandekar, P. L. Krapivsky, and Kirone Mallick

Phys. Rev. E 110, 064153 (2024) - Published 30 December, 2024

Magnetic exponent for the long-range bond-disordered Potts model

Ivan Lecce, Marco Picco, and Raoul Santachiara

Phys. Rev. E 110, 064154 (2024) - Published 30 December, 2024

Monte Carlo study of the two-dimensional kinetic Ising model under a nonantisymmetric magnetic field

Zeynep Demir Vatansever, Erol Vatansever, Andreas Berger, Alexandros Vasilopoulos, and Nikolaos G. Fytas

Phys. Rev. E 110, 064155 (2024) - Published 30 December, 2024

Critical fluctuations at a finite-time dynamical phase transition

Nalina Vadakkayil, Massimiliano Esposito, and Jan Meibohm

Phys. Rev. E 110, 064156 (2024) - Published 30 December, 2024

Nonlinear Dynamics and Chaos

Families of Hamiltonians sharing a common symmetry structure

C. Gonera, J. Gonera, A. Jasiński, and P. Kosiński

Phys. Rev. E 110, 064201 (2024) - Published 2 December, 2024

Chaotic dynamics in a galactic multipolar halo with a compact primary

Yeasin Ali and Suparna Roychowdhury

Phys. Rev. E 110, 064202 (2024) - Published 2 December, 2024

Rare-reversal chaos in two-disk dynamo models

Peter Frick and Roman Pleshkov

Phys. Rev. E 110, 064203 (2024) - Published 2 December, 2024

Spectral properties of chaotic microwave networks and quantum graphs under an edge swap transformation

Małgorzata Białous and Leszek Sirko

Phys. Rev. E 110, 064204 (2024) - Published 3 December, 2024

Kink scattering in deformed φ6 model

Aliakbar Moradi Marjaneh, Azam Ghaani, and Kurosh Javidan

Phys. Rev. E 110, 064205 (2024) - Published 3 December, 2024

Regulating protocols of globally coupled continuum systems: Effects on dynamics and thermodynamics

Premashis Kumar

Phys. Rev. E 110, 064206 (2024) - Published 3 December, 2024

Asymmetric-interaction-induced dynamical states in globally coupled populations of conformists and contrarians

M. Manoranjani, D. V. Senthilkumar, and V. K. Chandrasekar

Phys. Rev. E 110, 064207 (2024) - Published 4 December, 2024

Stationary and libration motion in two coupled rotors: Theoretical and experimental study

Monish B., Abhishek Thakur, Ratan Sarkar, K. Ujjwal Singh, Jyoti Sharma, Ishant Tiwari, Suresh Kumarasamy, Sangeeta D. Gadre, P. Parmananda, and Awadhesh Prasad

Phys. Rev. E 110, 064208 (2024) - Published 9 December, 2024

Unexplored aspects of spiral wave dynamics in the Barkley model within an extended parameter range

V. S. Zykov and E. Bodenschatz

Phys. Rev. E 110, 064209 (2024) - Published 11 December, 2024

Predicting effective quenching of stable pulses in slow-fast excitable media

Christopher D. Marcotte

Phys. Rev. E 110, 064210 (2024) - Published 11 December, 2024

Mean-field models of neural populations with Gaussian noise and non-Cauchy heterogeneities

Viktoras Pyragas and Kestutis Pyragas

Phys. Rev. E 110, 064211 (2024) - Published 11 December, 2024

Decentralized multiagent reinforcement learning algorithm using a cluster-synchronized laser network

Shun Kotoku, Takatomo Mihana, André Röhm, and Ryoichi Horisaki

Phys. Rev. E 110, 064212 (2024) - Published 11 December, 2024

Generalization of the Gauss map: A jump into chaos with universal features

Christian Beck, Ugur Tirnakli, and Constantino Tsallis

Phys. Rev. E 110, 064213 (2024) - Published 13 December, 2024

Role of coupling asymmetry in the fully disordered Kuramoto model

Axel Prüser and Andreas Engel

Phys. Rev. E 110, 064214 (2024) - Published 16 December, 2024

Explosive synchronization in coupled stars

Ruby Varshney, Kaustubh Manchanda, and Haider Hasan Jafri

Phys. Rev. E 110, 064215 (2024) - Published 16 December, 2024

Spontaneous symmetry and antisymmetry breaking of two-component solitons in a combination of linear and nonlinear double-well potentials

Liangwei Zeng, Jingsong He, Boris A. Malomed, Junbo Chen, and Xing Zhu

Phys. Rev. E 110, 064216 (2024) - Published 18 December, 2024

Nonlinear stochastic differential equations: A renormalization group approach to direct calculation of moments

Prasun Sarkar and Deb Shankar Ray

Phys. Rev. E 110, 064217 (2024) - Published 18 December, 2024

B-tipping points in plankton dynamics: Stochasticity and early warning signals

Shankha Narayan Chattopadhyay and Arvind Kumar Gupta

Phys. Rev. E 110, 064218 (2024) - Published 19 December, 2024

Contraction and synchronization in reservoir systems

Adrian S. Wong, Robert S. Martin, and Daniel Q. Eckhardt

Phys. Rev. E 110, 064219 (2024) - Published 20 December, 2024

Nonlinear dynamics and chaos in dissipative optical trimers with complex couplings

Johanne Hizanidis and Konstantinos G. Makris

Phys. Rev. E 110, 064220 (2024) - Published 20 December, 2024

Stability of oscillation quenching in coupled oscillator populations with heterogeneous coupling

Can Xu and Huajian Yu

Phys. Rev. E 110, 064221 (2024) - Published 20 December, 2024

Further results on the power-law decay of the fraction of the mixed eigenstates in kicked-top model with mixed-type classical phase space

Hua Yan, Qian Wang, and Marko Robnik

Phys. Rev. E 110, 064222 (2024) - Published 26 December, 2024

Spatiotemporal pattern formation and selection induced by cross-diffusion in a cancer growth model with Allee effect

Ying Sun, Jinliang Wang, You Li, Yanhua Zhu, Xiangyi Ma, Yunhui Zhao, Haokun Tai, and Ziwei Wang

Phys. Rev. E 110, 064223 (2024) - Published 26 December, 2024

Analysis of equilibria in a ring of phase oscillators with nearest-neighbor and next-nearest-neighbor interactions

Yirui Chen, Qionglin Dai, Yang Li, Haihong Li, and Junzhong Yang

Phys. Rev. E 110, 064224 (2024) - Published 26 December, 2024

Comparison of stochastic adaptation and stochastic resonance

Edmon Perkins

Phys. Rev. E 110, 064225 (2024) - Published 27 December, 2024

Discrete-time partial control of transiently chaotic systems under stochastic perturbations

Vipin Agarwal

Phys. Rev. E 110, 064226 (2024) - Published 27 December, 2024

Hurst exponent: A method for characterizing dynamical traps

Daniel Borin

Phys. Rev. E 110, 064227 (2024) - Published 31 December, 2024

Diffraction and pseudospectra in non-Hermitian quasiperiodic lattices

Ananya Ghatak, Dimitrios H. Kaltsas, Manas Kulkarni, and Konstantinos G. Makris

Phys. Rev. E 110, 064228 (2024) - Published 31 December, 2024

Networks and Complex Systems

Mean-field-game approach to nonpharmaceutical interventions in a social-structure model of epidemics

Louis Bremaud, Olivier Giraud, and Denis Ullmo

Phys. Rev. E 110, 064301 (2024) - Published 2 December, 2024

Scaling and universality for percolation in random networks: A unified view

Lorenzo Cirigliano, Gábor Timár, and Claudio Castellano

Phys. Rev. E 110, 064303 (2024) - Published 3 December, 2024

Dynamical importance and network perturbations

Ethan Young and Mason A. Porter

Phys. Rev. E 110, 064304 (2024) - Published 3 December, 2024

Synchronization in adaptive higher-order networks

Md Sayeed Anwar, S. Nirmala Jenifer, Paulsamy Muruganandam, Dibakar Ghosh, and Timoteo Carletti

Phys. Rev. E 110, 064305 (2024) - Published 5 December, 2024

Mutual information and the encoding of contingency tables

Maximilian Jerdee, Alec Kirkley, and M. E. J. Newman

Phys. Rev. E 110, 064306 (2024) - Published 5 December, 2024

This study focuses on the comparison of labelings, such as network communities, using mutual information. It presents a novel, significantly tighter, bound on the information needed to encode contingency tables in several typical cases. The work makes a valuable contribution to the understanding of the information content of labelings and adds to the discussion on comparing clusters or communities.

Singular-value statistics of directed random graphs

J. A. Méndez-Bermúdez and R. Aguilar-Sánchez

Phys. Rev. E 110, 064307 (2024) - Published 5 December, 2024

Sequence of pseudoequilibria describes the long-time behavior of the nonlinear noisy leaky integrate-and-fire model with large delay

María J. Cáceres, José A. Cañizo, and Alejandro Ramos-Lora

Phys. Rev. E 110, 064308 (2024) - Published 6 December, 2024

Role of higher order interactions on spiral waves in excitable media

Yi-peng Hu, Qian-ming Ding, Dong Yu, Yong Wu, Tian-yu Li, and Ya Jia

Phys. Rev. E 110, 064309 (2024) - Published 9 December, 2024

Functional decomposition and estimation of irreversibility in time series via machine learning

Michele Vodret, Cristiano Pacini, and Christian Bongiorno

Phys. Rev. E 110, 064310 (2024) - Published 9 December, 2024

Susceptible-infected-recovered-susceptible processes competing on simplicial complexes

Lina Zhao, Haiying Wang, Huijie Yang, Changgui Gu, and Jack Murdoch Moore

Phys. Rev. E 110, 064311 (2024) - Published 9 December, 2024

Q-Neighbor Ising model on a polarized network

Anna Chmiel and Julian Sienkiewicz

Phys. Rev. E 110, 064312 (2024) - Published 9 December, 2024

Stochastic quantum models for the dynamics of power grids

Pierrick Guichard, Nicolas Retière, and Didier Mayou

Phys. Rev. E 110, 064313 (2024) - Published 12 December, 2024

Fluid-network relations: Decay laws meet with spatial self-similarity, scale invariance, and control scaling

Yang Tian, Pei Sun, and Yizhou Xu

Phys. Rev. E 110, 064314 (2024) - Published 18 December, 2024

Higher-order triadic percolation on random hypergraphs

Hanlin Sun and Ginestra Bianconi

Phys. Rev. E 110, 064315 (2024) - Published 19 December, 2024

This paper proposes a theoretical framework for investigating random hypergraphs with higher-order triadic interactions. The authors combine percolation theory with nonlinear dynamics and examine hypergraphs with a time-varying giant component. The work sheds light on dynamics of complex networks, such as climate networks, biological networks, and brain networks.

Renormalization of complex networks with partition functions

Sungwon Jung, Sang Hoon Lee, and Jaeyoon Cho

Phys. Rev. E 110, 064316 (2024) - Published 24 December, 2024

Transition to synchronization in the adaptive Sakaguchi-Kuramoto model with higher-order interactions

Sangita Dutta, Prosenjit Kundu, Pitambar Khanra, Chittaranjan Hens, and Pinaki Pal

Phys. Rev. E 110, 064317 (2024) - Published 26 December, 2024

Random walks on bifractal networks

Kousuke Yakubo, Gentaro Shimojo, and Jun Yamamoto

Phys. Rev. E 110, 064318 (2024) - Published 26 December, 2024

q-deformed evolutionary dynamics in simple matrix games

Christopher R. Kitching and Tobias Galla

Phys. Rev. E 110, 064319 (2024) - Published 27 December, 2024

Bifurcations and multistability in empirical mutualistic networks

Andrus Giraldo and Deok-Sun Lee

Phys. Rev. E 110, 064320 (2024) - Published 30 December, 2024

Informational approach to uncover the age group interactions in epidemic spreading from macro analysis

Tiago Martinelli, Alberto Aleta, Francisco A. Rodrigues, and Yamir Moreno

Phys. Rev. E 110, 064321 (2024) - Published 31 December, 2024

Biological Physics

Formation of motile cell clusters in heterogeneous model tumors: The role of cell-cell alignment

Quirine J. S. Braat, Cornelis Storm, and Liesbeth M. C. Janssen

Phys. Rev. E 110, 064401 (2024) - Published 3 December, 2024

Collectively migrating clusters of tumor cells can spread cancer more effectively than single cells, yet the mechanisms driving their formation remain unclear. Using a computational model, this study investigates how cell-cell alignment and the presence of nonmotile cells within a densely packed tumor environment impact clustering dynamics. The study offers new insights into the physical drivers of early-stage metastasis.

Flexible string model of unsaturated lipid bilayer

Boris Kheyfets and Sergei Mukhin

Phys. Rev. E 110, 064402 (2024) - Published 3 December, 2024

Coat stiffening can explain invagination of clathrin-coated membranes

Felix Frey and Ulrich S. Schwarz

Phys. Rev. E 110, 064403 (2024) - Published 10 December, 2024

Generalized end-product feedback circuit can sense high-dimensional environmental fluctuations

Fang Yu and Mikhail Tikhonov

Phys. Rev. E 110, 064404 (2024) - Published 16 December, 2024

Biophysical model for joint analysis of chromatin and RNA sequencing data

Catherine Felce, Gennady Gorin, and Lior Pachter

Phys. Rev. E 110, 064405 (2024) - Published 17 December, 2024

Swarm coherence mechanism for jellyfish

Erik Gengel, Zafrir Kuplik, Dror Angel, and Eyal Heifetz

Phys. Rev. E 110, 064406 (2024) - Published 23 December, 2024

This article addresses the question of the mechanism underlying formation of jellyfish swarms. The authors model jellyfish as active Brownian particles and consider behavioral reactions to environmental conditions and to self-induced stimuli. They numerically study how different parameters affect the system behavior. Their analysis suggests that jellyfish swarms are formed due to a mutual interplay of environment and behavior.

Gradient sensing limit of an elongated cell with orientational control

Kento Nakamura and Tetsuya J. Kobayashi

Phys. Rev. E 110, 064407 (2024) - Published 27 December, 2024

Polymers

Effect of magnetomechanical hysteresis on the field-induced oscillations of particles in a magnetoactive elastomer

Anastasiya M. Biller, Oleg V. Stolbov, and Yuriy L. Raikher

Phys. Rev. E 110, 064501 (2024) - Published 2 December, 2024

Viscoelastic relaxation of random scale-free copolymer networks

Marcus V. Alves Ribeiro and Mircea Galiceanu

Phys. Rev. E 110, 064502 (2024) - Published 9 December, 2024

Mapping self-avoiding walk on obstacle-ridden lattice onto chelation of heavy metal ions: Monte Carlo study

Viktoria Blavatska, Jaroslav Ilnytskyi, and Erkki Lähderanta

Phys. Rev. E 110, 064503 (2024) - Published 9 December, 2024

Conformation and dynamics of wet externally actuated filaments with tangential active forces

Loek van Steijn, Mohammad Fazelzadeh, and Sara Jabbari-Farouji

Phys. Rev. E 110, 064504 (2024) - Published 16 December, 2024

Colloids, Complex Fluids, and Active Matter

Effects of collective patterns, confinement, and fluid flow on active particle transport

Chiara Calascibetta, Laetitia Giraldi, Zakarya El Khiyati, and Jérémie Bec

Phys. Rev. E 110, 064601 (2024) - Published 2 December, 2024

Self-trapping of active particles with nonreciprocal interactions in disordered media

Rodrigo Saavedra and Fernando Peruani

Phys. Rev. E 110, 064602 (2024) - Published 9 December, 2024

Direct manipulation of diffusion in colloidal glasses via controlled generation of quasi-particle-like defects

Yi-Di Wang, Chu Xiao, Anupam Kumar, Yun-Hong Shi, Chun-Shing Lee, King-Cheong Lam, Man-Kin Fung, Chor-Hoi Chan, Yuen-Hong Tsang, Bo Li, Chi-Hang Lam, and Cho-Tung Yip

Phys. Rev. E 110, 064603 (2024) - Published 10 December, 2024

Single microparticles are ejected from a glassy colloidal monolayer by laser tweezers, creating a soft spot or quasivoid in the glass. By using digital video microscopy, the authors monitor particle dynamics during and after particle ejection. The experimental work, supported by molecular dynamics simulations, provides evidence that quasivoids induce stringlike motions.

Birth, death, and horizontal flight: Malthusian flocks with an easy plane in three dimensions

John Toner

Phys. Rev. E 110, 064604 (2024) - Published 10 December, 2024

Hyperuniformity scaling of maximally random jammed packings of two-dimensional binary disks

Charles Emmett Maher and Salvatore Torquato

Phys. Rev. E 110, 064605 (2024) - Published 12 December, 2024

Optimal diffusion of chiral active particles with strategic reorientations

Kristian Stølevik Olsen and Hartmut Löwen

Phys. Rev. E 110, 064606 (2024) - Published 17 December, 2024

Colloidal deposits from evaporating sessile droplets: A computationally efficient framework for predicting the final deposit shape

Nathan C. J. Coombs, Mykyta V. Chubynsky, and James E. Sprittles

Phys. Rev. E 110, 064607 (2024) - Published 19 December, 2024

Modeling the efficiency and effective temperature of bacterial heat engines

Roland Wiese, Klaus Kroy, and Viktor Holubec

Phys. Rev. E 110, 064608 (2024) - Published 23 December, 2024

Active Ornstein-Uhlenbeck model for bacterial heat engines

Roland Wiese, Klaus Kroy, and Viktor Holubec

Phys. Rev. E 110, 064609 (2024) - Published 23 December, 2024

Molecular Stokes-Einstein and Stokes-Einstein-Debye relations for water including viscosity-dependent slip and hydrodynamic radius

Sina Zendehroud, Jan O. Daldrop, Yann von Hansen, Henrik Kiefer, and Roland R. Netz

Phys. Rev. E 110, 064610 (2024) - Published 24 December, 2024

Liquid Crystals

Anchoring transitions in thin liquid crystal films as seen from a mean-force potentials approach

Izabela Śliwa, Pavel V. Maslennikov, and Alex V. Zakharov

Phys. Rev. E 110, 064701 (2024) - Published 17 December, 2024

Laser-driven nematic flow in microfluidic devices

Izabela Śliwa, Pavel V. Maslennikov, Dmitrii P. Shcherbinin, and Alex V. Zakharov

Phys. Rev. E 110, 064702 (2024) - Published 24 December, 2024

Films and Interfaces

Cooperative sequential adsorption of monomers on a square lattice in the presence of repulsive interactions between near neighbors

Nikolai Lebovka, Michał Cieśla, Mykhaylo Petryk, and Nikolai Vygornitskii

Phys. Rev. E 110, 064801 (2024) - Published 6 December, 2024

Effect of initial geometry on crumpled thin shells

Chang-Yi Lyu, Hong-Yue Huang, Hung-Chieh Fan Chiang, and Tzay-Ming Hong

Phys. Rev. E 110, 064802 (2024) - Published 9 December, 2024

Asymptotic properties of bridging transitions in sinusoidally shaped slits

Alexandr Malijevský and Martin Pospíšil

Phys. Rev. E 110, 064803 (2024) - Published 9 December, 2024

Random interfaces generated by the addition of structures of variable size

Nicolas Pétrélis and François Pétrélis

Phys. Rev. E 110, 064804 (2024) - Published 24 December, 2024

Granular Materials

Origins of the reverse Janssen effect

Srujal Shah, Ana Maria Mosquera Gomez, Payman Jalali, and Lou Kondic

Phys. Rev. E 110, 064901 (2024) - Published 11 December, 2024

Mean square displacement of intruders in freely cooling multicomponent granular mixtures

Rubén Gómez González, Santos Bravo Yuste, and Vicente Garzó

Phys. Rev. E 110, 064902 (2024) - Published 11 December, 2024

Solid Mechanics

Discontinuous dynamic transition in crack propagation of stretchable elastomers

Zehao Fan and Shi-Qing Wang

Phys. Rev. E 110, 065001 (2024) - Published 13 December, 2024

Tunable orbital angular momentum generator for directional acoustic transmission

Liulin Li, Bingyi Liu, and Zhongyi Guo

Phys. Rev. E 110, 065002 (2024) - Published 16 December, 2024

Odd dipole screening in radial inflation

Yang Fu, H. George E. Hentschel, Pawandeep Kaur, Avanish Kumar, and Itamar Procaccia

Phys. Rev. E 110, 065003 (2024) - Published 27 December, 2024

Energy dispersion of localized disturbance in continuum and discrete media

Julia A. Baimova, Nikolay M. Bessonov, Anton M. Krivtsov, and Ioanna N. Trunova

Phys. Rev. E 110, 065004 (2024) - Published 30 December, 2024

Fluid Dynamics

Reversible logic with a nanofluidic memristor

Sergio Portillo, Javier Cervera, Salvador Mafe, and Patricio Ramirez

Phys. Rev. E 110, 065101 (2024) - Published 2 December, 2024

Pore occupancy of gas hydrate

David DiCarlo, Zachary W. Murphy, Kehua You, Peter B. Flemings, and Xiaoli Liu

Phys. Rev. E 110, 065102 (2024) - Published 4 December, 2024

Numerical study of thermal nonequilibrium effects on Richtmyer-Meshkov flow driven by a heavy forward-triangular bubble

Salman Saud Alsaeed and Satyvir Singh

Phys. Rev. E 110, 065103 (2024) - Published 4 December, 2024

Numerical analysis of binary fluid convection with thermal and solutal lateral gradients

Juan Sánchez Umbría and Marta Net

Phys. Rev. E 110, 065104 (2024) - Published 6 December, 2024

Microscale transport of CO2 and H2 storage in shale gas formations

Lingfu Liu and Saman A. Aryana

Phys. Rev. E 110, 065105 (2024) - Published 9 December, 2024

Rare, noise-induced, bypass transition in plane Couette flow can bypass instantons

Joran Rolland

Phys. Rev. E 110, 065106 (2024) - Published 9 December, 2024

Fractal dimension of non-Newtonian Hele-Shaw flow subject to Saffman-Taylor instability

J. Adriazola, B. Gu, L. J. Cummings, and L. Kondic

Phys. Rev. E 110, 065107 (2024) - Published 16 December, 2024

Surfing droplets on nanoscopic films driven by surface acoustic waves

N. S. Satpathi, L. Malik, S. Nandy, T. Sujith, L. Y. Yeo, and A. K. Sen

Phys. Rev. E 110, 065108 (2024) - Published 17 December, 2024

Plasma Physics

Evolution of radiative thermal instability in a confined medium

Henry Fetsch and Nathaniel J. Fisch

Phys. Rev. E 110, 065201 (2024) - Published 3 December, 2024

Compression of high-power laser pulse leads to increase of electron acceleration efficiency

O. E. Vais, M. G. Lobok, and V. Yu. Bychenkov

Phys. Rev. E 110, 065202 (2024) - Published 4 December, 2024

Laser-triggered terahertz emission from near-critical-density targets

V. Yu. Bychenkov, A. V. Brantov, M. G. Lobok, and A. S. Kuratov

Phys. Rev. E 110, 065203 (2024) - Published 5 December, 2024

Spatial, temporal, and spectral characteristics of the x-ray emissions in the peripheral direction of a laboratory atmospheric discharge

E. V. Parkevich, K. V. Shpakov, I. S. Baidin, A. A. Rodionov, A. I. Khirianova, Ya. K. Bolotov, and V. A. Ryabov

Phys. Rev. E 110, 065204 (2024) - Published 9 December, 2024

Ionization dynamics and x-ray transmission of aluminum plasma at temperature reaching 110 eV

Qiang Yi et al.

Phys. Rev. E 110, 065205 (2024) - Published 9 December, 2024

Mitigation of stimulated Brillouin scattering in inhomogeneous plasmas by broadband lasers

Yao Zhao, Anle Lei, Ning Kang, Fujian Li, Xiaofeng Li, Huiya Liu, Zhuwen Lin, Hongwei Yin, Yilin Xu, Yaozhi Yi, and Zhengxi Xu

Phys. Rev. E 110, 065206 (2024) - Published 12 December, 2024

Impact of electron trapping on stimulated Raman scattering under incoherent broadband laser light in homogeneous plasma

David R. Blackman, Vladimir Tikhonchuk, Ondrej Klimo, and Stefan Weber

Phys. Rev. E 110, 065207 (2024) - Published 16 December, 2024

Broadband lasers have been suggested as a useful tool to suppress laser-plasma instabilities. However, this study shows that in the kinetic inflation regime broadband lasers are ineffective in suppressing backward stimulated Raman scattering (SRS). The role of electron trapping is pivotal in the persistence of SRS despite the increased laser bandwidth.

Multiplicity of electron- and photon-seeded electromagnetic showers at multipetawatt laser facilities

M. Pouyez, A. A. Mironov, T. Grismayer, A. Mercuri-Baron, F. Perez, M. Vranic, C. Riconda, and M. Grech

Phys. Rev. E 110, 065208 (2024) - Published 16 December, 2024

Existence of true plasma equilibria in asymmetric magnetic fields

E. A. Sorokina and V. I. Ilgisonis

Phys. Rev. E 110, 065209 (2024) - Published 17 December, 2024

Two-dimensional shock propagation and Mach stem formation induced by a laser-produced annular plasma

Felipe Veloso, Vicente Rosales, Mario Favre, and Julio Valenzuela

Phys. Rev. E 110, 065210 (2024) - Published 17 December, 2024

Producing entangled photon pairs and quantum squeezed states in plasmas

Kenan Qu and Nathaniel J. Fisch

Phys. Rev. E 110, 065211 (2024) - Published 20 December, 2024

This study addresses the question: how bright can one make a beam with nontrivial quantum correlations such as entanglement or squeezing? The authors consider a nonlinear mechanism in plasmas, namely four wave mixing to make polarization-entangled photon pairs. The discovery of stable high intensity “quantum light” in plasmas opens the door to remarkable applications, including enhanced x-ray imaging, quantum (sub-Rayleigh) lithography, and greatly improved quantum communication.

Relativistic two-wave resonant acceleration of electrons at large-amplitude standing whistler waves during laser-plasma interaction

Takayoshi Sano, Shogo Isayama, Kenta Takahashi, and Shuichi Matsukiyo

Phys. Rev. E 110, 065212 (2024) - Published 30 December, 2024

Absorption of electromagnetic waves at oblique resonance in plasmas threaded by inhomogenous magnetic fields

Trishul Dhalia, Rohit Juneja, and Amita Das

Phys. Rev. E 110, 065213 (2024) - Published 30 December, 2024

Excitation of electromagnetic rogue waves in magnetized plasmas

Heng Zhang, Zhi-Lin Zhu, Malcolm-Wray Dunlop, Wen-Shan Duan, and Qing-He Zhang

Phys. Rev. E 110, 065214 (2024) - Published 30 December, 2024

Computational Physics

Hybrid discontinuous Galerkin method for the hyperbolic linear Boltzmann transport equation for multiscale problems

Qizheng Sun, Xiaojing Liu, Xiang Chai, Hui He, Lianjie Wang, Bin Zhang, and Tengfei Zhang

Phys. Rev. E 110, 065301 (2024) - Published 5 December, 2024

Computational inverse scattering with internal sources: A reproducing kernel Hilbert space approach

Yakun Dong, Kamran Sadiq, Otmar Scherzer, and John C. Schotland

Phys. Rev. E 110, 065302 (2024) - Published 11 December, 2024

Quadratic scaling path integral molecular dynamics for fictitious identical particles and its application to fermion systems

Yunuo Xiong, Shujuan Liu, and Hongwei Xiong

Phys. Rev. E 110, 065303 (2024) - Published 17 December, 2024

Lattice Boltzmann Shakhov kinetic models for variable Prandtl number on Cartesian lattices

Oleg Ilyin

Phys. Rev. E 110, 065304 (2024) - Published 18 December, 2024

Zero-temperature Monte Carlo simulations of two-dimensional quantum spin glasses guided by neural network states

L. Brodoloni and S. Pilati

Phys. Rev. E 110, 065305 (2024) - Published 19 December, 2024

One major difficulty in applying quantum Monte Carlo to quantum spin glass models arises from the need to control the population of random walkers, which can lead to biases. Here, a projective quantum Monte Carlo method with neural-network-based guiding wave functions is used to eliminate population control bias. The study provides valuable insights into quantum spin glasses and demonstrates the effectiveness of neural network states in simulating frustrated quantum systems.

Hyperoptimized approximate contraction of tensor networks for rugged-energy-landscape spin glasses on periodic square and cubic lattices

Adil A. Gangat and Johnnie Gray

Phys. Rev. E 110, 065306 (2024) - Published 23 December, 2024

Physics-guided multistage neural network: A physically guided network for step initial values and dispersive shock wave phenomena

Wen-Xuan Yuan and Rui Guo

Phys. Rev. E 110, 065307 (2024) - Published 27 December, 2024

Projected complex Langevin sampling method for bosons in the canonical and microcanonical ensembles

Ethan C. McGarrigle, Hector D. Ceniceros, and Glenn H. Fredrickson

Phys. Rev. E 110, 065308 (2024) - Published 27 December, 2024

ERRATA

Erratum: Broken detailed balance and entropy production in directed networks [Phys. Rev. E 110, 034313 (2024)]

Ramón Nartallo-Kaluarachchi, Malbor Asllani, Gustavo Deco, Morten L. Kringelbach, Alain Goriely, and Renaud Lambiotte

Phys. Rev. E 110, 069901 (2024) - Published 24 December, 2024

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