Hawkes processes with infinite mean intensity
Cecilia Aubrun, Michael Benzaquen, and Jean-Philippe Bouchaud
Phys. Rev. E 105, L032101 (2022) - Published 31 March, 2022
Charbel Habchi and Mohammad K. Jawed
Phys. Rev. E 105, 034401 (2022) - Published 4 March, 2022
Spiders can float in the air using their silk threads as a kind of balloon. This paper presents detailed simulations of this behavior which show that electrostatic charges play an important role, both by providing a lift force and by determining the spatial arrangement of multiple threads.
Sascha Kaldasch and Andreas Engel
Phys. Rev. E 105, 034132 (2022) - Published 23 March, 2022
A one-dimensional random walk is recurrent, and with probability one it will always return to its origin. However, random walks are also known to spend most of their time either on the left or right side of their starting point. How can these two properties coexist side by side? In this paper, the authors explain this in an intuitive way be analyzing walks on a finite interval.
T. Aspelmeier and M. A. Moore
Phys. Rev. E 105, 034138 (2022) - Published 25 March, 2022
The free energy landscape of disordered systems is key to understanding many of their properties. Here, by studying the free energy barriers in a spin glass model, the authors analyze the system in different regimes and make a connection with puzzling results from earlier work.
Leah A. Keating, James P. Gleeson, and David J. P. O'Sullivan
Phys. Rev. E 105, 034306 (2022) - Published 17 March, 2022
The spread of behavior in social networks is a complex process where multiple exposures to a behavior can increase the probability that it is adopted. The authors model this type of spreading with branching processes, facilitating both analytical approaches and simulations.
Brian Chang and Arshad Kudrolli
Phys. Rev. E 105, 034901 (2022) - Published 11 March, 2022
The drag on two objects moving in tandem through a fluid is not simply twice the drag on one of the objects. The authors study the drag on two rods moving through granular sediments and show that, unlike in Newtonian fluids, the leading rod can experience considerably more drag than the trailing one.
Cecilia Aubrun, Michael Benzaquen, and Jean-Philippe Bouchaud
Phys. Rev. E 105, L032101 (2022) - Published 31 March, 2022
Ishant Tiwari, Richa Phogat, Animesh Biswas, P. Parmananda, and Sudeshna Sinha
Phys. Rev. E 105, L032201 (2022) - Published 14 March, 2022
Vianney Gimenez-Pinto
Phys. Rev. E 105, L032601 (2022) - Published 3 March, 2022
Romain Mari, Eric Bertin, and Cesare Nardini
Phys. Rev. E 105, L032602 (2022) - Published 7 March, 2022
Navdeep Rana and Prasad Perlekar
Phys. Rev. E 105, L032603 (2022) - Published 15 March, 2022
Itay Azizi, Alexander Y. Grosberg, and Yitzhak Rabin
Phys. Rev. E 105, L032604 (2022) - Published 30 March, 2022
Vahid Shaghaghi, G. Massimo Palma, and Giuliano Benenti
Phys. Rev. E 105, 034101 (2022) - Published 1 March, 2022
Kosuke Miura, Yuki Izumida, and Koji Okuda
Phys. Rev. E 105, 034102 (2022) - Published 1 March, 2022
Aagam Shah, Deepak Dhar, and R. Rajesh
Phys. Rev. E 105, 034103 (2022) - Published 2 March, 2022
Astik Haldar and Abhik Basu
Phys. Rev. E 105, 034104 (2022) - Published 3 March, 2022
J. R. S. Lima, F. W. S. Lima, T. F. A. Alves, G. A. Alves, and A. Macedo-Filho
Phys. Rev. E 105, 034105 (2022) - Published 3 March, 2022
Baruch Meerson
Phys. Rev. E 105, 034106 (2022) - Published 3 March, 2022
Nahuel Freitas, Karel Proesmans, and Massimiliano Esposito
Phys. Rev. E 105, 034107 (2022) - Published 3 March, 2022
Hugo Cui, Luca Saglietti, and Lenka Zdeborová
Phys. Rev. E 105, 034108 (2022) - Published 4 March, 2022
Hanshuang Chen and Feng Huang
Phys. Rev. E 105, 034109 (2022) - Published 4 March, 2022
Philipp Rehner, Thijs van Westen, and Joachim Gross
Phys. Rev. E 105, 034110 (2022) - Published 7 March, 2022
M. Hoyuelos
Phys. Rev. E 105, 034111 (2022) - Published 9 March, 2022
Felix Ivander, Nicholas Anto-Sztrikacs, and Dvira Segal
Phys. Rev. E 105, 034112 (2022) - Published 10 March, 2022
Derek Frydel
Phys. Rev. E 105, 034113 (2022) - Published 11 March, 2022
Roberto da Silva
Phys. Rev. E 105, 034114 (2022) - Published 14 March, 2022
Takaaki Monnai
Phys. Rev. E 105, 034115 (2022) - Published 14 March, 2022
J. Klinger, A. Barbier-Chebbah, R. Voituriez, and O. Bénichou
Phys. Rev. E 105, 034116 (2022) - Published 14 March, 2022
Pierre Bonnin, Ian Stansfield, M. Carmen Romano, and Norbert Kern
Phys. Rev. E 105, 034117 (2022) - Published 15 March, 2022
Quancheng Wang, Zhenfang He, Junfeng Wang, and Hao Hu
Phys. Rev. E 105, 034118 (2022) - Published 15 March, 2022
A. I. Osinsky and N. V. Brilliantov
Phys. Rev. E 105, 034119 (2022) - Published 15 March, 2022
James F. Lutsko
Phys. Rev. E 105, 034120 (2022) - Published 15 March, 2022
Mahendra K. Verma, Soumyadeep Chatterjee, Aryan Sharma, and Ananya Mohapatra
Phys. Rev. E 105, 034121 (2022) - Published 16 March, 2022
Jasleen Kaur, Ramandeep S. Johal, and Michel Feidt
Phys. Rev. E 105, 034122 (2022) - Published 17 March, 2022
M. Ostilli, Claudionor G. Bezerra, and G. M. Viswanathan
Phys. Rev. E 105, 034123 (2022) - Published 17 March, 2022
Joseph W. P. Wilkinson, Tomaž Prosen, and Juan P. Garrahan
Phys. Rev. E 105, 034124 (2022) - Published 17 March, 2022
Ning Yu, Shiran Wang, Chunfang Sun, and Gangcheng Wang
Phys. Rev. E 105, 034125 (2022) - Published 18 March, 2022
L. Shakurova and E. Kustova
Phys. Rev. E 105, 034126 (2022) - Published 21 March, 2022
Sandipan Mohanta, Sushant Saryal, and Bijay Kumar Agarwalla
Phys. Rev. E 105, 034127 (2022) - Published 21 March, 2022
Jie Ren, Zhao Wang, Weixia Chen, and Wen-Long You
Phys. Rev. E 105, 034128 (2022) - Published 21 March, 2022
Milan Žukovič and Georgii Kalagov
Phys. Rev. E 105, 034129 (2022) - Published 21 March, 2022
Neha S. Wadia, Ryan V. Zarcone, and Michael R. DeWeese
Phys. Rev. E 105, 034130 (2022) - Published 21 March, 2022
Ramgopal Agrawal, Federico Corberi, Ferdinando Insalata, and Sanjay Puri
Phys. Rev. E 105, 034131 (2022) - Published 22 March, 2022
Sascha Kaldasch and Andreas Engel
Phys. Rev. E 105, 034132 (2022) - Published 23 March, 2022
A one-dimensional random walk is recurrent, and with probability one it will always return to its origin. However, random walks are also known to spend most of their time either on the left or right side of their starting point. How can these two properties coexist side by side? In this paper, the authors explain this in an intuitive way be analyzing walks on a finite interval.
Nathaniel V. Mon Père, Pierre de Buyl, and Sophie de Buyl
Phys. Rev. E 105, 034133 (2022) - Published 23 March, 2022
Riekshika Sanwari and Anurag Sahay
Phys. Rev. E 105, 034134 (2022) - Published 24 March, 2022
Riekshika Sanwari and Anurag Sahay
Phys. Rev. E 105, 034135 (2022) - Published 24 March, 2022
Zdzislaw Burda and Andrzej Jarosz
Phys. Rev. E 105, 034136 (2022) - Published 24 March, 2022
Francesco Parisen Toldin
Phys. Rev. E 105, 034137 (2022) - Published 24 March, 2022
T. Aspelmeier and M. A. Moore
Phys. Rev. E 105, 034138 (2022) - Published 25 March, 2022
The free energy landscape of disordered systems is key to understanding many of their properties. Here, by studying the free energy barriers in a spin glass model, the authors analyze the system in different regimes and make a connection with puzzling results from earlier work.
Alessio Franchi, Davide Rossini, and Ettore Vicari
Phys. Rev. E 105, 034139 (2022) - Published 28 March, 2022
Soumen Das, Shankar Ghosh, and Shamik Gupta
Phys. Rev. E 105, 034140 (2022) - Published 29 March, 2022
Paul C. Bressloff
Phys. Rev. E 105, 034141 (2022) - Published 30 March, 2022
Steven T. Bramwell
Phys. Rev. E 105, 034142 (2022) - Published 30 March, 2022
Carlo Cafaro, Shannon Ray, and Paul M. Alsing
Phys. Rev. E 105, 034143 (2022) - Published 31 March, 2022
Jean-Luc Garden and Michel Peyrard
Phys. Rev. E 105, 034144 (2022) - Published 31 March, 2022
Michael Kirejczyk, Gerhard Müller, and Pierre-Henri Chavanis
Phys. Rev. E 105, 034145 (2022) - Published 31 March, 2022
Waldemar Kłobus, Paweł Kurzyński, Marek Kuś, Wiesław Laskowski, Robert Przybycień, and Karol Życzkowski
Phys. Rev. E 105, 034201 (2022) - Published 2 March, 2022
Y. Miyazawa, C. Chong, P. G. Kevrekidis, and J. Yang
Phys. Rev. E 105, 034202 (2022) - Published 14 March, 2022
D. Dolinina and A. Yulin
Phys. Rev. E 105, 034203 (2022) - Published 16 March, 2022
Karin Wittmann W., E. R. Castro, Angela Foerster, and Lea F. Santos
Phys. Rev. E 105, 034204 (2022) - Published 17 March, 2022
Yicun Zhen, Bertrand Chapron, Etienne Mémin, and Lin Peng
Phys. Rev. E 105, 034205 (2022) - Published 18 March, 2022
Giancarlo Consolo, Carmela Curró, Gabriele Grifó, and Giovanna Valenti
Phys. Rev. E 105, 034206 (2022) - Published 21 March, 2022
S. Varbev, I. Boradjiev, R. Kamburova, and H. Chamati
Phys. Rev. E 105, 034207 (2022) - Published 21 March, 2022
Premashis Kumar and Gautam Gangopadhyay
Phys. Rev. E 105, 034208 (2022) - Published 21 March, 2022
Dmitry A. Smirnov
Phys. Rev. E 105, 034209 (2022) - Published 25 March, 2022
T. Mithun, P. G. Kevrekidis, A. Saxena, and A. R. Bishop
Phys. Rev. E 105, 034210 (2022) - Published 25 March, 2022
K. Sathiyadevi, V. K. Chandrasekar, and M. Lakshmanan
Phys. Rev. E 105, 034211 (2022) - Published 25 March, 2022
Anaïs Espinoso and Ralph G. Andrzejak
Phys. Rev. E 105, 034212 (2022) - Published 29 March, 2022
Nir Hacker and Boris A. Malomed
Phys. Rev. E 105, 034213 (2022) - Published 31 March, 2022
Oliver E. Williams, Piero Mazzarisi, Fabrizio Lillo, and Vito Latora
Phys. Rev. E 105, 034301 (2022) - Published 7 March, 2022
Jing Li, Zequan Li, Hui Qi, and Qiuhan Zhang
Phys. Rev. E 105, 034302 (2022) - Published 14 March, 2022
Tian-Jiao Feng, Jie Mei, Cong Li, Xiu-Deng Zheng, Sabin Lessard, and Yi Tao
Phys. Rev. E 105, 034303 (2022) - Published 14 March, 2022
C. T. Martínez-Martínez, J. A. Méndez-Bermúdez, Francisco A. Rodrigues, and Ernesto Estrada
Phys. Rev. E 105, 034304 (2022) - Published 15 March, 2022
Kai Bergermann and Martin Stoll
Phys. Rev. E 105, 034305 (2022) - Published 15 March, 2022
Leah A. Keating, James P. Gleeson, and David J. P. O'Sullivan
Phys. Rev. E 105, 034306 (2022) - Published 17 March, 2022
The spread of behavior in social networks is a complex process where multiple exposures to a behavior can increase the probability that it is adopted. The authors model this type of spreading with branching processes, facilitating both analytical approaches and simulations.
M. Manoranjani, R. Gopal, D. V. Senthilkumar, V. K. Chandrasekar, and M. Lakshmanan
Phys. Rev. E 105, 034307 (2022) - Published 18 March, 2022
Fakhteh Ghanbarnejad, Kai Seegers, Alessio Cardillo, and Philipp Hövel
Phys. Rev. E 105, 034308 (2022) - Published 21 March, 2022
Snehasish Roy Chowdhury, Ramesh Arumugam, Wei Zou, V. K. Chandrasekar, and D. V. Senthilkumar
Phys. Rev. E 105, 034309 (2022) - Published 23 March, 2022
Ginestra Bianconi
Phys. Rev. E 105, 034310 (2022) - Published 24 March, 2022
Adib Khazaee and Fakhteh Ghanbarnejad
Phys. Rev. E 105, 034311 (2022) - Published 28 March, 2022
S. Thamizharasan, V. K. Chandrasekar, M. Senthilvelan, Rico Berner, Eckehard Schöll, and D. V. Senthilkumar
Phys. Rev. E 105, 034312 (2022) - Published 28 March, 2022
Yannick Feld and Alexander K. Hartmann
Phys. Rev. E 105, 034313 (2022) - Published 28 March, 2022
Jakob Niehues, Gorm Gruner Jensen, and Jan O. Haerter
Phys. Rev. E 105, 034314 (2022) - Published 31 March, 2022
Charbel Habchi and Mohammad K. Jawed
Phys. Rev. E 105, 034401 (2022) - Published 4 March, 2022
Spiders can float in the air using their silk threads as a kind of balloon. This paper presents detailed simulations of this behavior which show that electrostatic charges play an important role, both by providing a lift force and by determining the spatial arrangement of multiple threads.
H. P. Jain, D. Wenzel, and A. Voigt
Phys. Rev. E 105, 034402 (2022) - Published 7 March, 2022
Takuya Imaizumi, Nobuhisa Umeki, Ryo Yoshizawa, Tomoyuki Obuchi, Yasushi Sako, and Yoshiyuki Kabashima
Phys. Rev. E 105, 034403 (2022) - Published 8 March, 2022
Paul C. Bressloff
Phys. Rev. E 105, 034404 (2022) - Published 10 March, 2022
Upasana L. Mallimadugula and Eric A. Galburt
Phys. Rev. E 105, 034405 (2022) - Published 11 March, 2022
Ayan Biswas
Phys. Rev. E 105, 034406 (2022) - Published 14 March, 2022
Sergei F. Chekmarev
Phys. Rev. E 105, 034407 (2022) - Published 14 March, 2022
Li Li and Zhiguo Zhao
Phys. Rev. E 105, 034408 (2022) - Published 21 March, 2022
Wolfram Barfuss and Richard P. Mann
Phys. Rev. E 105, 034409 (2022) - Published 21 March, 2022
Vaibhav Wasnik
Phys. Rev. E 105, 034410 (2022) - Published 21 March, 2022
Turner Silverthorne, Edward Saehong Oh, and Adam R. Stinchcombe
Phys. Rev. E 105, 034411 (2022) - Published 30 March, 2022
J. S. Kłos and J. Paturej
Phys. Rev. E 105, 034501 (2022) - Published 8 March, 2022
Khristine Haydukivska, Viktoria Blavatska, Jarosław S. Kłos, and Jarosław Paturej
Phys. Rev. E 105, 034502 (2022) - Published 8 March, 2022
M. C. Gandikota and A. Cacciuto
Phys. Rev. E 105, 034503 (2022) - Published 24 March, 2022
Jianzhu Ju, Ken Sekimoto, Luca Cipelletti, Costantino Creton, and Tetsuharu Narita
Phys. Rev. E 105, 034504 (2022) - Published 31 March, 2022
Manisha L. Patel and Nicholas T. Ouellette
Phys. Rev. E 105, 034601 (2022) - Published 4 March, 2022
Joshua A. Mysona, Alon V. McCormick, and David C. Morse
Phys. Rev. E 105, 034602 (2022) - Published 7 March, 2022
Joshua A. Mysona, Alon V. McCormick, and David C. Morse
Phys. Rev. E 105, 034603 (2022) - Published 7 March, 2022
Aswin V. Muthachikavil, Georgios M. Kontogeorgis, Xiaodong Liang, Qun Lei, and Baoliang Peng
Phys. Rev. E 105, 034604 (2022) - Published 17 March, 2022
I. M. Tambovtsev, A. O. Leonov, I. S. Lobanov, Alexei D. Kiselev, and V. M. Uzdin
Phys. Rev. E 105, 034701 (2022) - Published 21 March, 2022
Ziheng Wang, Phillip Servio, and Alejandro Rey
Phys. Rev. E 105, 034702 (2022) - Published 23 March, 2022
A. Roy, R. A. I. Haque, A. J. Mitra, S. Tarafdar, and T. Dutta
Phys. Rev. E 105, 034801 (2022) - Published 10 March, 2022
Ian Johnson and Dionisios Margetis
Phys. Rev. E 105, 034802 (2022) - Published 21 March, 2022
Kunio Fujiwara and Masahiko Shibahara
Phys. Rev. E 105, 034803 (2022) - Published 24 March, 2022
Brian Chang and Arshad Kudrolli
Phys. Rev. E 105, 034901 (2022) - Published 11 March, 2022
The drag on two objects moving in tandem through a fluid is not simply twice the drag on one of the objects. The authors study the drag on two rods moving through granular sediments and show that, unlike in Newtonian fluids, the leading rod can experience considerably more drag than the trailing one.
Peter Olsson
Phys. Rev. E 105, 034902 (2022) - Published 16 March, 2022
Douglas D. Carvalho, Nicolao C. Lima, and Erick M. Franklin
Phys. Rev. E 105, 034903 (2022) - Published 18 March, 2022
Aaron J. Mowitz
Phys. Rev. E 105, 035001 (2022) - Published 3 March, 2022
J. D. Sherwood and S. Ghosal
Phys. Rev. E 105, 035002 (2022) - Published 25 March, 2022
Anu V. S. Nath, Anubhab Roy, Rama Govindarajan, and S. Ravichandran
Phys. Rev. E 105, 035101 (2022) - Published 8 March, 2022
Razieh Jalalabadi and Thorsten Stoesser
Phys. Rev. E 105, 035102 (2022) - Published 8 March, 2022
L. Malik, A. Nath, S. Nandy, T. Laurell, and A. K. Sen
Phys. Rev. E 105, 035103 (2022) - Published 8 March, 2022
Weiyang Jiang and Zijing Ding
Phys. Rev. E 105, 035104 (2022) - Published 15 March, 2022
Mónica Basilio Hazas, Francesca Ziliotto, Massimo Rolle, and Gabriele Chiogna
Phys. Rev. E 105, 035105 (2022) - Published 16 March, 2022
Philipp G. Marthaler and Andreas G. Class
Phys. Rev. E 105, 035106 (2022) - Published 16 March, 2022
N. Benkacem, A. Salhi, A. Khlifi, S. Nasraoui, and C. Cambon
Phys. Rev. E 105, 035107 (2022) - Published 16 March, 2022
Péter Tamás Nagy
Phys. Rev. E 105, 035108 (2022) - Published 21 March, 2022
Konstantinos Steiros
Phys. Rev. E 105, 035109 (2022) - Published 23 March, 2022
V. Khudiakov and A. Pukhov
Phys. Rev. E 105, 035201 (2022) - Published 2 March, 2022
Virginia Bresci, Laurent Gremillet, and Martin Lemoine
Phys. Rev. E 105, 035202 (2022) - Published 4 March, 2022
Shaoyu Lu, Dong Huang, and Yan Feng
Phys. Rev. E 105, 035203 (2022) - Published 11 March, 2022
N. Shukla, K. Schoeffler, J. Vieira, R. Fonseca, E. Boella, and L. O. Silva
Phys. Rev. E 105, 035204 (2022) - Published 30 March, 2022
Philipp Ströker and Karsten Meier
Phys. Rev. E 105, 035301 (2022) - Published 11 March, 2022
Michael R. Geller, Andrew Arrasmith, Zoë Holmes, Bin Yan, Patrick J. Coles, and Andrew Sornborger
Phys. Rev. E 105, 035302 (2022) - Published 17 March, 2022
Noah Seekins and Alexander J. Wagner
Phys. Rev. E 105, 035303 (2022) - Published 18 March, 2022
Quinn Parker, Dilina Perera, Ying Wai Li, and Thomas Vogel
Phys. Rev. E 105, 035304 (2022) - Published 24 March, 2022
Ran Yaacoby, Nathan Schaar, Leon Kellerhals, Oren Raz, Danny Hermelin, and Rami Pugatch
Phys. Rev. E 105, 035305 (2022) - Published 28 March, 2022
Ding Xu, Yisu Huang, and Jinglei Xu
Phys. Rev. E 105, 035306 (2022) - Published 28 March, 2022
G. S. Demyanov, D. V. Knyazev, and P. R. Levashov
Phys. Rev. E 105, 035307 (2022) - Published 28 March, 2022