Upper bound for quantum entropy production from entropy flux
Domingos S. P. Salazar
Phys. Rev. E 105, L042101 (2022) - Published 1 April, 2022
Jan Michael Rost, Thomas Pattard, Uwe C. Täuber, Dirk Jan Bukman, Raissa D'Souza, Jian-Wei Pan, Nicola Spaldin, and Juan-José Liétor-Santos
Phys. Rev. E 105, 040001 (2022) - Published 18 April, 2022
Fabian Coupette and Tanja Schilling
Phys. Rev. E 105, 044108 (2022) - Published 6 April, 2022
The percolation transition is a well known phenomenon in statistical physics. In this paper, the authors introduce an approach that confirms the percolation thresholds known from a number of exact solutions, and leads to additional exactly solvable percolation problems.
C. M. Newman and D. L. Stein
Phys. Rev. E 105, 044132 (2022) - Published 21 April, 2022
The authors study the ground state of a spin glass by looking at its stability when one of the coupling constants is changed. Their method can help answer long-standing questions about the nature of the low-temperature phase of spin glasses.
Alexander Krauß, Thilo Gross, and Barbara Drossel
Phys. Rev. E 105, 044310 (2022) - Published 15 April, 2022
An ecological system, such as a community of species that can move between different habitats, can be analyzed by studying population dynamics on a complex network. This paper describes a way to extend our understanding of such systems by examining their stability.
Gregory Knoll and Benjamin Lindner
Phys. Rev. E 105, 044411 (2022) - Published 26 April, 2022
This paper extends previous work on information processing in neural systems to biologically more relevant recurrent networks. The authors use analytical approximations and numerical simulations to investigate encoding of information in populations of leaky integrate-and-fire neurons. They study how noise and synaptic strengths influence network activity and information transmission.
Ydan Ben Dor, Sunghan Ro, Yariv Kafri, Mehran Kardar, and Julien Tailleur
Phys. Rev. E 105, 044603 (2022) - Published 8 April, 2022
The authors demonstrate that boundaries can change the bulk behavior of an active matter system even in the thermodynamic limit. This begs an even more intriguing question: “Can boundaries be modified to control the bulk properties of the system?” Unlike for equilibrium systems, the authors believe that this is possible provided their method can be adapted to more general boundary shapes.
Domingos S. P. Salazar
Phys. Rev. E 105, L042101 (2022) - Published 1 April, 2022
Iván León and Diego Pazó
Phys. Rev. E 105, L042201 (2022) - Published 11 April, 2022
Srilena Kundu and Dibakar Ghosh
Phys. Rev. E 105, L042202 (2022) - Published 21 April, 2022
Kai Cui, Wasiur R. KhudaBukhsh, and Heinz Koeppl
Phys. Rev. E 105, L042301 (2022) - Published 28 April, 2022
Luca Cocconi, Guillaume Salbreux, and Gunnar Pruessner
Phys. Rev. E 105, L042601 (2022) - Published 25 April, 2022
Varghese Babu and Srikanth Sastry
Phys. Rev. E 105, L042901 (2022) - Published 18 April, 2022
Luis A. Pugnaloni, C. Manuel Carlevaro, Ryan Kozlowski, Hu Zheng, Lou Kondic, and Joshua E. S. Socolar
Phys. Rev. E 105, L042902 (2022) - Published 21 April, 2022
Bhanu Prasad Bhowmik, Michael Moshe, and Itamar Procaccia
Phys. Rev. E 105, L043001 (2022) - Published 7 April, 2022
Jérémie Vasseur, Fabian B. Wadsworth, Eloïse Bretagne, and Donald B. Dingwell
Phys. Rev. E 105, L043301 (2022) - Published 20 April, 2022
Mariana Sacrini Ayres Ferraz and Alexandre Hiroaki Kihara
Phys. Rev. E 105, 044101 (2022) - Published 1 April, 2022
Oliver Hart, Andrew Lucas, and Rahul Nandkishore
Phys. Rev. E 105, 044103 (2022) - Published 4 April, 2022
S. S. Akimenko, A. V. Myshlyavtsev, M. D. Myshlyavtseva, V. A. Gorbunov, S. O. Podgornyi, and O. S. Solovyeva
Phys. Rev. E 105, 044104 (2022) - Published 4 April, 2022
Amir Nourhani, Vincent H. Crespi, and Paul E. Lammert
Phys. Rev. E 105, 044105 (2022) - Published 5 April, 2022
Eiki Iyoda, Kazuya Kaneko, and Takahiro Sagawa
Phys. Rev. E 105, 044106 (2022) - Published 5 April, 2022
Julian Kappler and Ronojoy Adhikari
Phys. Rev. E 105, 044107 (2022) - Published 5 April, 2022
Fabian Coupette and Tanja Schilling
Phys. Rev. E 105, 044108 (2022) - Published 6 April, 2022
The percolation transition is a well known phenomenon in statistical physics. In this paper, the authors introduce an approach that confirms the percolation thresholds known from a number of exact solutions, and leads to additional exactly solvable percolation problems.
Pedro J. Colmenares
Phys. Rev. E 105, 044109 (2022) - Published 6 April, 2022
Márcio Sampaio Gomes-Filho, Fernando Albuquerque Oliveira, and Marco Aurélio Alves Barbosa
Phys. Rev. E 105, 044110 (2022) - Published 11 April, 2022
Antonio Rodríguez, Fernando D. Nobre, and Constantino Tsallis
Phys. Rev. E 105, 044111 (2022) - Published 7 April, 2022
Serge Galam and Richard R. W. Brooks
Phys. Rev. E 105, 044112 (2022) - Published 11 April, 2022
Benjamin Ertel, Jann van der Meer, and Udo Seifert
Phys. Rev. E 105, 044113 (2022) - Published 13 April, 2022
Hamid Arian Zad and Jozef Strečka
Phys. Rev. E 105, 044115 (2022) - Published 13 April, 2022
Zihua Liu, Debabrata Panja, and Gerard T. Barkema
Phys. Rev. E 105, 044116 (2022) - Published 14 April, 2022
Takashi Uneyama
Phys. Rev. E 105, 044117 (2022) - Published 14 April, 2022
Pengbo Xu, Ralf Metzler, and Wanli Wang
Phys. Rev. E 105, 044118 (2022) - Published 14 April, 2022
F. Le Vot, S. B. Yuste, E. Abad, and D. S. Grebenkov
Phys. Rev. E 105, 044119 (2022) - Published 14 April, 2022
Cleverson Cherubim, Thiago R. de Oliveira, and Daniel Jonathan
Phys. Rev. E 105, 044120 (2022) - Published 14 April, 2022
Dominic C. Rose, Katarzyna Macieszczak, Igor Lesanovsky, and Juan P. Garrahan
Phys. Rev. E 105, 044121 (2022) - Published 15 April, 2022
Sheng Fang, Da Ke, Wei Zhong, and Youjin Deng
Phys. Rev. E 105, 044122 (2022) - Published 15 April, 2022
Koushik Goswami
Phys. Rev. E 105, 044123 (2022) - Published 15 April, 2022
Kunal Bhattacharya and Abhijit Chakraborty
Phys. Rev. E 105, 044124 (2022) - Published 15 April, 2022
Saikat Mondal and Sourav Bhattacharjee
Phys. Rev. E 105, 044125 (2022) - Published 18 April, 2022
Angelo Valente, Manlio De Domenico, and Oriol Artime
Phys. Rev. E 105, 044126 (2022) - Published 18 April, 2022
Yoshihiko Hasegawa
Phys. Rev. E 105, 044127 (2022) - Published 20 April, 2022
Sushanta Dattagupta
Phys. Rev. E 105, 044128 (2022) - Published 20 April, 2022
Yuri Yu. Tarasevich, Andrei V. Eserkepov, and Irina V. Vodolazskaya
Phys. Rev. E 105, 044129 (2022) - Published 21 April, 2022
Hirohito Kiwata
Phys. Rev. E 105, 044130 (2022) - Published 21 April, 2022
Manuel O. Cáceres and Marco Nizama
Phys. Rev. E 105, 044131 (2022) - Published 21 April, 2022
C. M. Newman and D. L. Stein
Phys. Rev. E 105, 044132 (2022) - Published 21 April, 2022
The authors study the ground state of a spin glass by looking at its stability when one of the coupling constants is changed. Their method can help answer long-standing questions about the nature of the low-temperature phase of spin glasses.
Federica Ferretti, Victor Chardès, Thierry Mora, Aleksandra M. Walczak, and Irene Giardina
Phys. Rev. E 105, 044133 (2022) - Published 22 April, 2022
Saeed Ahmad, Krishna Rijal, and Dibyendu Das
Phys. Rev. E 105, 044134 (2022) - Published 22 April, 2022
Charles K. C. Lieou and Takeshi Egami
Phys. Rev. E 105, 044135 (2022) - Published 25 April, 2022
Sebastian Sensale, Pranav Sharma, and Gaurav Arya
Phys. Rev. E 105, 044136 (2022) - Published 25 April, 2022
Sreenath K. Manikandan, Cyril Elouard, Kater W. Murch, Alexia Auffèves, and Andrew N. Jordan
Phys. Rev. E 105, 044137 (2022) - Published 25 April, 2022
Nirvana Caballero, Thierry Giamarchi, Vivien Lecomte, and Elisabeth Agoritsas
Phys. Rev. E 105, 044138 (2022) - Published 25 April, 2022
Matteo Paoluzzi
Phys. Rev. E 105, 044139 (2022) - Published 25 April, 2022
Qiwei Yu and Yuhai Tu
Phys. Rev. E 105, 044140 (2022) - Published 25 April, 2022
Kasper Poulsen, Marco Majland, Seth Lloyd, Morten Kjaergaard, and Nikolaj T. Zinner
Phys. Rev. E 105, 044141 (2022) - Published 26 April, 2022
Nalina Vadakkayil, Sanat K. Singha, and Subir K. Das
Phys. Rev. E 105, 044142 (2022) - Published 26 April, 2022
H. A. Weidenmüller
Phys. Rev. E 105, 044143 (2022) - Published 27 April, 2022
Ioachim G. Dusa and Tilo Wettig
Phys. Rev. E 105, 044144 (2022) - Published 27 April, 2022
Ramandeep S. Johal and Renuka Rai
Phys. Rev. E 105, 044145 (2022) - Published 28 April, 2022
Charles Moslonka and Ken Sekimoto
Phys. Rev. E 105, 044146 (2022) - Published 28 April, 2022
Yi-Zheng Zhen, Dario Egloff, Kavan Modi, and Oscar Dahlsten
Phys. Rev. E 105, 044147 (2022) - Published 29 April, 2022
Long Gao, Junhao Peng, and Chunming Tang
Phys. Rev. E 105, 044201 (2022) - Published 4 April, 2022
Ethan Zack, Daimeng Zhang, Melissa Trepanier, Jingnan Cai, Tamin Tai, Nikos Lazarides, Johanne Hizanidis, and Steven M. Anlage
Phys. Rev. E 105, 044202 (2022) - Published 6 April, 2022
S. Stalin, R. Ramakrishnan, and M. Lakshmanan
Phys. Rev. E 105, 044203 (2022) - Published 6 April, 2022
A. M. Kamchatnov
Phys. Rev. E 105, 044204 (2022) - Published 11 April, 2022
Uttam Bhat and Stephan B. Munch
Phys. Rev. E 105, 044205 (2022) - Published 13 April, 2022
Ivan S. Maksymov, Andrey Pototsky, and Sergey A. Suslov
Phys. Rev. E 105, 044206 (2022) - Published 13 April, 2022
Andrei G. Vladimirov
Phys. Rev. E 105, 044207 (2022) - Published 18 April, 2022
Yuki Araya, Hiroaki Ito, and Hiroyuki Kitahata
Phys. Rev. E 105, 044208 (2022) - Published 19 April, 2022
Hanchang Liu, Weiqing Liu, Chaoxin Fu, and Meng Zhan
Phys. Rev. E 105, 044209 (2022) - Published 20 April, 2022
Qi-Hao Li, Yuan-Xun Xia, Shu-Xiao Xu, Zhen Song, Jun-Ting Pan, Alexander V. Panfilov, and Hong Zhang
Phys. Rev. E 105, 044210 (2022) - Published 21 April, 2022
Ross Parker, Alejandro Aceves, Jesús Cuevas-Maraver, and P. G. Kevrekidis
Phys. Rev. E 105, 044211 (2022) - Published 22 April, 2022
Md Raf E Ul Shougat, XiaoFu Li, and Edmon Perkins
Phys. Rev. E 105, 044212 (2022) - Published 25 April, 2022
Marcel Novaes
Phys. Rev. E 105, 044213 (2022) - Published 29 April, 2022
Frank Schweitzer and Georges Andres
Phys. Rev. E 105, 044301 (2022) - Published 1 April, 2022
Wei Chen, Jian Gao, Yueheng Lan, and Jinghua Xiao
Phys. Rev. E 105, 044302 (2022) - Published 1 April, 2022
Wout Merbis and Ivano Lodato
Phys. Rev. E 105, 044303 (2022) - Published 4 April, 2022
Vincent Pouthier
Phys. Rev. E 105, 044304 (2022) - Published 11 April, 2022
Yilun Shang
Phys. Rev. E 105, 044305 (2022) - Published 11 April, 2022
Sungyeop Lee and Junghyo Jo
Phys. Rev. E 105, 044306 (2022) - Published 11 April, 2022
Z. Babaee, M. Bagherikalhor, L. Elyasizad, M. D. Niry, and G. R. Jafari
Phys. Rev. E 105, 044307 (2022) - Published 13 April, 2022
Jeehye Choi and Byungjoon Min
Phys. Rev. E 105, 044308 (2022) - Published 13 April, 2022
Henrik Wolf, David-Maximilian Storch, Marc Timme, and Malte Schröder
Phys. Rev. E 105, 044309 (2022) - Published 14 April, 2022
Alexander Krauß, Thilo Gross, and Barbara Drossel
Phys. Rev. E 105, 044310 (2022) - Published 15 April, 2022
An ecological system, such as a community of species that can move between different habitats, can be analyzed by studying population dynamics on a complex network. This paper describes a way to extend our understanding of such systems by examining their stability.
Minh Quang Le and Dane Taylor
Phys. Rev. E 105, 044311 (2022) - Published 18 April, 2022
Mahsa Khoshkhou and Afshin Montakhab
Phys. Rev. E 105, 044312 (2022) - Published 19 April, 2022
Abbas K. Rizi, Ali Faqeeh, Arash Badie-Modiri, and Mikko Kivelä
Phys. Rev. E 105, 044313 (2022) - Published 20 April, 2022
Peter Mann, V. Anne Smith, John B. O. Mitchell, and Simon Dobson
Phys. Rev. E 105, 044314 (2022) - Published 20 April, 2022
Matthew J. Young, Matthew J. Silk, Alex J. Pritchard, and Nina H. Fefferman
Phys. Rev. E 105, 044315 (2022) - Published 21 April, 2022
Yi-Zhi Xu, Ho Fai Po, Chi Ho Yeung, and David Saad
Phys. Rev. E 105, 044316 (2022) - Published 21 April, 2022
Lorenzo Costantini, Carla Sciarra, Luca Ridolfi, and Francesco Laio
Phys. Rev. E 105, 044317 (2022) - Published 22 April, 2022
Christopher Sebastian Hidalgo Calva and Alejandro P. Riascos
Phys. Rev. E 105, 044318 (2022) - Published 25 April, 2022
Ana C. Buchini Labayen, Mariela I. Bellotti, Walter Bast, and Fabian J. Bonetto
Phys. Rev. E 105, 044401 (2022) - Published 12 April, 2022
Viktoras Pyragas and Kestutis Pyragas
Phys. Rev. E 105, 044402 (2022) - Published 15 April, 2022
Tian-Jiao Feng, Cong Li, Xiu-Deng Zheng, Sabin Lessard, and Yi Tao
Phys. Rev. E 105, 044403 (2022) - Published 15 April, 2022
Andreas Volkhardt and Helmut Grubmüller
Phys. Rev. E 105, 044404 (2022) - Published 15 April, 2022
Vladimir P. Zhdanov
Phys. Rev. E 105, 044405 (2022) - Published 20 April, 2022
Chumin Sun, K. C. Lin, C. Y. Yeung, Emily S. C. Ching, Yu-Ting Huang, Pik-Yin Lai, and C. K. Chan
Phys. Rev. E 105, 044406 (2022) - Published 20 April, 2022
Tanmoy Pal, Keerti Chauhan, and Sanjay Kumar
Phys. Rev. E 105, 044407 (2022) - Published 21 April, 2022
Akshara Sharma, Aniruddha Seal, Sahithya S. Iyer, and Anand Srivastava
Phys. Rev. E 105, 044408 (2022) - Published 21 April, 2022
Z. V. Gagkayeva, B. P. Gorshunov, A. Ye. Kachesov, and K. A. Motovilov
Phys. Rev. E 105, 044409 (2022) - Published 22 April, 2022
Emiliano Perez Ipiña and Brian A. Camley
Phys. Rev. E 105, 044410 (2022) - Published 26 April, 2022
Gregory Knoll and Benjamin Lindner
Phys. Rev. E 105, 044411 (2022) - Published 26 April, 2022
This paper extends previous work on information processing in neural systems to biologically more relevant recurrent networks. The authors use analytical approximations and numerical simulations to investigate encoding of information in populations of leaky integrate-and-fire neurons. They study how noise and synaptic strengths influence network activity and information transmission.
S. V. Grigoriev, O. D. Shnyrkov, P. M. Pustovoit, E. G. Iashina, and K. A. Pshenichnyi
Phys. Rev. E 105, 044412 (2022) - Published 29 April, 2022
Keerthi Radhakrishnan and Sunil P. Singh
Phys. Rev. E 105, 044501 (2022) - Published 1 April, 2022
Wencheng Ji, Tom W. J. de Geus, Elisabeth Agoritsas, and Matthieu Wyart
Phys. Rev. E 105, 044601 (2022) - Published 4 April, 2022
Akiho Tani, Yutaro Tanii, Kyoka Ishiyama, Shusaku Harada, and Hisao Satoh
Phys. Rev. E 105, 044602 (2022) - Published 5 April, 2022
Ydan Ben Dor, Sunghan Ro, Yariv Kafri, Mehran Kardar, and Julien Tailleur
Phys. Rev. E 105, 044603 (2022) - Published 8 April, 2022
The authors demonstrate that boundaries can change the bulk behavior of an active matter system even in the thermodynamic limit. This begs an even more intriguing question: “Can boundaries be modified to control the bulk properties of the system?” Unlike for equilibrium systems, the authors believe that this is possible provided their method can be adapted to more general boundary shapes.
Mohit Sharma, Manoj Kumar Nandi, and Sarika Maitra Bhattacharyya
Phys. Rev. E 105, 044604 (2022) - Published 15 April, 2022
Pritha Dolai, Simon Krekels, and Christian Maes
Phys. Rev. E 105, 044605 (2022) - Published 18 April, 2022
J. B. Sokoloff
Phys. Rev. E 105, 044606 (2022) - Published 18 April, 2022
J.-C. Loudet, A. Choudhury, M. Qiu, and J. J. Feng
Phys. Rev. E 105, 044607 (2022) - Published 20 April, 2022
Ella M. King, Zizhao Wang, David A. Weitz, Frans Spaepen, and Michael P. Brenner
Phys. Rev. E 105, 044608 (2022) - Published 25 April, 2022
Joshua Eglinton, Mike I. Smith, and Michael R. Swift
Phys. Rev. E 105, 044609 (2022) - Published 26 April, 2022
Alexander R. Sprenger, Christian Bair, and Hartmut Löwen
Phys. Rev. E 105, 044610 (2022) - Published 28 April, 2022
Antoni Kocot, Barbara Loska, Yuki Arakawa, and Katarzyna Merkel
Phys. Rev. E 105, 044701 (2022) - Published 5 April, 2022
Alexis de la Cotte, Olaf Stenull, Sophie Ettinger, Peter J. Collings, Tom C. Lubensky, and A. G. Yodh
Phys. Rev. E 105, 044702 (2022) - Published 5 April, 2022
Olaf Stenull, Alexis de la Cotte, Sophie Ettinger, Peter J. Collings, A. G. Yodh, and T. C. Lubensky
Phys. Rev. E 105, 044703 (2022) - Published 5 April, 2022
Xiaomei Yao, Lei Zhang, and Jeff Z. Y. Chen
Phys. Rev. E 105, 044704 (2022) - Published 15 April, 2022
William G. C. Oropesa, Eduardo S. Nascimento, and André P. Vieira
Phys. Rev. E 105, 044705 (2022) - Published 20 April, 2022
Amit Choudhary, Suraj Kumar, Ambika Bawa, Surinder P. Singh, Anil K. Thakur, Rajesh, and Ashok M. Biradar
Phys. Rev. E 105, 044706 (2022) - Published 25 April, 2022
Akihiro Yamashita (山下晃弘) and Jun-ichi Fukuda (福田順一)
Phys. Rev. E 105, 044707 (2022) - Published 25 April, 2022
Mary K. Coe, Robert Evans, and Nigel B. Wilding
Phys. Rev. E 105, 044801 (2022) - Published 7 April, 2022
Zi-Le Wang, Zhirong Liu, Wenhui Duan, and Zhi-Feng Huang
Phys. Rev. E 105, 044802 (2022) - Published 13 April, 2022
Swarn Lata Singh, Lothar Schimmele, and S. Dietrich
Phys. Rev. E 105, 044803 (2022) - Published 20 April, 2022
Roberto Arévalo
Phys. Rev. E 105, 044901 (2022) - Published 6 April, 2022
So Kitsunezaki (狐崎 創), Akihiro Nishimoto (西本 明弘), Tsuyoshi Mizuguchi (水口 毅), Yousuke Matsuo (松尾 洋介), and Akio Nakahara (中原 明生)
Phys. Rev. E 105, 044902 (2022) - Published 21 April, 2022
Malith Prasanna, Arttu Polojärvi, Mingdong Wei, and Jan Åström
Phys. Rev. E 105, 045001 (2022) - Published 14 April, 2022
Mohammad Aaquib Ansari and Koushik Viswanathan
Phys. Rev. E 105, 045002 (2022) - Published 18 April, 2022
X. J. Wang, Y. Z. Lu, X. Lu, J. T. Huo, Y. J. Wang, W. H. Wang, L. H. Dai, and M. Q. Jiang
Phys. Rev. E 105, 045003 (2022) - Published 25 April, 2022
Ahmed Al Brahim and Sigurdur T. Thoroddsen
Phys. Rev. E 105, 045101 (2022) - Published 4 April, 2022
Suyash Verma and Arman Hemmati
Phys. Rev. E 105, 045102 (2022) - Published 11 April, 2022
Yohei Kono, Yoshihiko Susuki, and Takashi Hikihara
Phys. Rev. E 105, 045103 (2022) - Published 12 April, 2022
Brandon E. Morgan
Phys. Rev. E 105, 045104 (2022) - Published 14 April, 2022
Huiyang Yu, Bo Liu, Chengyun Wang, Xuechao Liu, Xi-Yun Lu, and Haibo Huang
Phys. Rev. E 105, 045105 (2022) - Published 18 April, 2022
Pedro O. S. Livera, Pedro H. A. Anjos, and José A. Miranda
Phys. Rev. E 105, 045106 (2022) - Published 21 April, 2022
Jiří Vacula and Pavel Novotný
Phys. Rev. E 105, 045107 (2022) - Published 21 April, 2022
Anna Frishman and Tobias Grafke
Phys. Rev. E 105, 045108 (2022) - Published 27 April, 2022
R. Tucker Sprenkle, S. D. Bergeson, Luciano G. Silvestri, and Michael S. Murillo
Phys. Rev. E 105, 045201 (2022) - Published 6 April, 2022
K. Rasek, F. X. Bronold, and H. Fehske
Phys. Rev. E 105, 045202 (2022) - Published 8 April, 2022
Yu. M. Aliev and A. A. Frolov
Phys. Rev. E 105, 045203 (2022) - Published 8 April, 2022
Sohom Roy, R. Chhiber, S. Dasso, M. E. Ruiz, and W. H. Matthaeus
Phys. Rev. E 105, 045204 (2022) - Published 12 April, 2022
J. Narkis, F. Conti, and F. N. Beg
Phys. Rev. E 105, 045205 (2022) - Published 13 April, 2022
Jiong-Hang Liang, Tian-Xing Hu, D. Wu, and Zheng-Mao Sheng
Phys. Rev. E 105, 045206 (2022) - Published 14 April, 2022
V. M. Malkin and N. J. Fisch
Phys. Rev. E 105, 045207 (2022) - Published 18 April, 2022
Q. S. Feng, R. Aboushelbaya, M. W. von der Leyen, B. T. Spiers, R. W. Paddock, I. Ouatu, R. Timmis, R. H. W. Wang, L. H. Cao, Z. J. Liu, C. Y. Zheng, X. T. He, and P. A. Norreys
Phys. Rev. E 105, 045208 (2022) - Published 27 April, 2022
Masaru Nakanotani, Renato P. Camata, Robert R. Arslanbekov, and Gary P. Zank
Phys. Rev. E 105, 045209 (2022) - Published 27 April, 2022
Suyash Bajpai and Dmitri A. Romanov
Phys. Rev. E 105, 045210 (2022) - Published 28 April, 2022
Miloš Skočić, Dejan Dojić, and Srdjan Bukvić
Phys. Rev. E 105, 045211 (2022) - Published 29 April, 2022
David Rosenberger, Kipton Barros, Timothy C. Germann, and Nicholas Lubbers
Phys. Rev. E 105, 045301 (2022) - Published 1 April, 2022
Z. J. Liu, C. Shu, S. Y. Chen, W. Liu, Z. Y. Yuan, and L. M. Yang
Phys. Rev. E 105, 045302 (2022) - Published 4 April, 2022
Michael F. Herbst, Benjamin Stamm, Stefan Wessel, and Matteo Rizzi
Phys. Rev. E 105, 045303 (2022) - Published 4 April, 2022
Sébastien Becker, Emilie Devijver, Rémi Molinier, and Noël Jakse
Phys. Rev. E 105, 045304 (2022) - Published 6 April, 2022
Yi Gao, Yang Jiao, and Yongming Liu
Phys. Rev. E 105, 045305 (2022) - Published 11 April, 2022
E. Empting, N. Bader, and M. Oettel
Phys. Rev. E 105, 045306 (2022) - Published 11 April, 2022
Dong Hun Kang and Tae Sup Yun
Phys. Rev. E 105, 045307 (2022) - Published 11 April, 2022
Aritra Mukherjee, Dipankar N. Basu, Pranab K. Mondal, and Lin Chen
Phys. Rev. E 105, 045308 (2022) - Published 13 April, 2022
Tianpeng Jiang and Yang Xiang
Phys. Rev. E 105, 045309 (2022) - Published 13 April, 2022
Luciano Zunino, Felipe Olivares, Haroldo V. Ribeiro, and Osvaldo A. Rosso
Phys. Rev. E 105, 045310 (2022) - Published 18 April, 2022
Cole Miles, Benjamin Cohen-Stead, Owen Bradley, Steven Johnston, Richard Scalettar, and Kipton Barros
Phys. Rev. E 105, 045311 (2022) - Published 18 April, 2022
Oleg Ilyin
Phys. Rev. E 105, 045312 (2022) - Published 19 April, 2022
Tom Ichibha, Verena A. Neufeld, Kenta Hongo, Ryo Maezono, and Alex J. W. Thom
Phys. Rev. E 105, 045313 (2022) - Published 19 April, 2022
Geng Wang, Linlin Fei, and Kai H. Luo
Phys. Rev. E 105, 045314 (2022) - Published 20 April, 2022
Lukas Kades, Martin Gärttner, Thomas Gasenzer, and Jan M. Pawlowski
Phys. Rev. E 105, 045315 (2022) - Published 22 April, 2022
Yasushi Mino, Hazuki Tanaka, Koichi Nakaso, Kuniaki Gotoh, and Hiroyuki Shinto
Phys. Rev. E 105, 045316 (2022) - Published 25 April, 2022
Chunhua Zhang, Hong Liang, Zhaoli Guo, and Lian-Ping Wang
Phys. Rev. E 105, 045317 (2022) - Published 29 April, 2022
E. Empting, M. Klopotek, A. Hinderhofer, F. Schreiber, and M. Oettel
Phys. Rev. E 105, 049901 (2022) - Published 5 April, 2022
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