Ensemble inequivalence in systems with wave-particle interaction
Tarcísio N. Teles, Duccio Fanelli, and Stefano Ruffo
Phys. Rev. E 89, 050101(R) (2014) - Published 7 May, 2014
Leonard Mlodinow and Todd A. Brun
Phys. Rev. E 89, 052102 (2014) - Published 2 May, 2014
This work studies the relationship between the thermodynamic arrow of time (associated with an increase in entropy) and the psychological arrow of time (associated with the existence of memory). The authors argue that the two arrows must necessarily align even for physical memories which are nondissipative and time reversible.
Rafael D. Schulman, Matilda Backholm, William S. Ryu, and Kari Dalnoki-Veress
Phys. Rev. E 89, 050701(R) (2014) - Published 30 May, 2014
The authors devised a technique in which a micropipette is used both to clamp a model organism and also to measure forces involved in the undulatory swimming motions of this worm.
Gentaro Watanabe, B. Prasanna Venkatesh, and Peter Talkner
Phys. Rev. E 89, 052116 (2014) - Published 12 May, 2014
For quantum systems, a direct experimental confirmation of the transient fluctuation relations named after Jarzynski and Crooks is hard to implement, due to the difficulty of measuring the work supplied to the system. The authors show that a particular type of energy measurement can be used in modified fluctuation relations that are simply related to the original ones.
Tess Homan, Christa Gjaltema, and Devaraj van der Meer
Phys. Rev. E 89, 052204 (2014) - Published 9 May, 2014
A sand bed consisting of fine particles compactifies when it is subjected to a shock. The authors find experimentally that due to the air trapped within the sand bed, compaction is larger at higher ambient pressure, and attribute this counterintuitive response to a decrease of the friction between the grains inside the bed.
Qingkun Liu, Jianwei Tang, Yuan Zhang, Angel Martinez, Shaowei Wang, Sailing He, Timothy J. White, and Ivan I. Smalyukh
Phys. Rev. E 89, 052505 (2014) - Published 15 May, 2014
This work studies dispersions of gold nanorods at high concentrations in a liquid crystal matrix. The authors show that the liquid crystal orientational ordering aligns rodlike nanoparticles giving rise to strong polarization-dependent plasmonic properties, absorption, and scattering, abnormal dispersions of refractive index, and enhanced optical birefringence with sign reversal.
L. Couëdel, S. Zhdanov, V. Nosenko, A. V. Ivlev, H. M. Thomas, and G. E. Morfill
Phys. Rev. E 89, 053108 (2014) - Published 30 May, 2014
This work describes a detailed experimental study of synchronization of oscillating particles in a two-dimensional plasma crystal and subsequent crystal melting induced by wave growth of the oscillations. Such two-dimensional plasmas can be considered models for studying emergence of synchronization and symmetry breaking in nonlinear systems.
Brian M. Haines, Fernando F. Grinstein, and James R. Fincke
Phys. Rev. E 89, 053302 (2014) - Published 8 May, 2014
The authors present an improved strategy for performing simulations of inertial confinement fusion. The commonly used strategy of beginning the simulation in two dimensions and later mapping it to three dimensions has significant shortcomings. The authors demonstrate that introducing suitable nonuniform perturbations at the time of the mapping produces results in good agreement with purely three-dimensional simulations and with available experimental data.
Tarcísio N. Teles, Duccio Fanelli, and Stefano Ruffo
Phys. Rev. E 89, 050101(R) (2014) - Published 7 May, 2014
Matthias Grob, Claus Heussinger, and Annette Zippelius
Phys. Rev. E 89, 050201(R) (2014) - Published 27 May, 2014
Valeria Conti Nibali, Giovanna D'Angelo, and Mounir Tarek
Phys. Rev. E 89, 050301(R) (2014) - Published 12 May, 2014
Aaron P. R. Eberle, Nicos Martys, Lionel Porcar, Steven R. Kline, William L. George, Jung M. Kim, Paul D. Butler, and Norman J. Wagner
Phys. Rev. E 89, 050302(R) (2014) - Published 12 May, 2014
Thomas Bickel, Guillermo Zecua, and Alois Würger
Phys. Rev. E 89, 050303(R) (2014) - Published 14 May, 2014
B. Kamala Latha, Regina Jose, K. P. N. Murthy, and V. S. S. Sastry
Phys. Rev. E 89, 050501(R) (2014) - Published 27 May, 2014
Rafael D. Schulman, Matilda Backholm, William S. Ryu, and Kari Dalnoki-Veress
Phys. Rev. E 89, 050701(R) (2014) - Published 30 May, 2014
The authors devised a technique in which a micropipette is used both to clamp a model organism and also to measure forces involved in the undulatory swimming motions of this worm.
V. V. Smirnov, O. V. Gendelman, and L. I. Manevitch
Phys. Rev. E 89, 050901(R) (2014) - Published 8 May, 2014
Ulrich Parlitz, Jan Schumann-Bischoff, and Stefan Luther
Phys. Rev. E 89, 050902(R) (2014) - Published 15 May, 2014
Bijay Kumar Agarwalla, Huanan Li, Baowen Li, and Jian-Sheng Wang
Phys. Rev. E 89, 052101 (2014) - Published 1 May, 2014
Leonard Mlodinow and Todd A. Brun
Phys. Rev. E 89, 052102 (2014) - Published 2 May, 2014
This work studies the relationship between the thermodynamic arrow of time (associated with an increase in entropy) and the psychological arrow of time (associated with the existence of memory). The authors argue that the two arrows must necessarily align even for physical memories which are nondissipative and time reversible.
Alexander K. Hartmann
Phys. Rev. E 89, 052103 (2014) - Published 2 May, 2014
A. Provata, C. Nicolis, and G. Nicolis
Phys. Rev. E 89, 052105 (2014) - Published 5 May, 2014
Masato Itami and Shin-ichi Sasa
Phys. Rev. E 89, 052106 (2014) - Published 5 May, 2014
Enrique Muñoz and Francisco J. Peña
Phys. Rev. E 89, 052107 (2014) - Published 7 May, 2014
Chikako Uchiyama
Phys. Rev. E 89, 052108 (2014) - Published 7 May, 2014
Ana L. Acuña-Lara, Francisco Sastre, and José Raúl Vargas-Arriola
Phys. Rev. E 89, 052109 (2014) - Published 8 May, 2014
M. A. A. da Silva, G. M. Viswanathan, and J. C. Cressoni
Phys. Rev. E 89, 052110 (2014) - Published 8 May, 2014
Roberto Artuso, Giampaolo Cristadoro, Mirko Degli Esposti, and Georgie Knight
Phys. Rev. E 89, 052111 (2014) - Published 8 May, 2014
Julien Randon-Furling
Phys. Rev. E 89, 052112 (2014) - Published 8 May, 2014
Michael Habeck
Phys. Rev. E 89, 052113 (2014) - Published 9 May, 2014
Shun Ogawa and Yoshiyuki Y. Yamaguchi
Phys. Rev. E 89, 052114 (2014) - Published 12 May, 2014
Miguel Ibáñez Berganza, Alberto Petri, and Pietro Coletti
Phys. Rev. E 89, 052115 (2014) - Published 12 May, 2014
Gentaro Watanabe, B. Prasanna Venkatesh, and Peter Talkner
Phys. Rev. E 89, 052116 (2014) - Published 12 May, 2014
For quantum systems, a direct experimental confirmation of the transient fluctuation relations named after Jarzynski and Crooks is hard to implement, due to the difficulty of measuring the work supplied to the system. The authors show that a particular type of energy measurement can be used in modified fluctuation relations that are simply related to the original ones.
R. Cofré and B. Cessac
Phys. Rev. E 89, 052117 (2014) - Published 12 May, 2014
P. Di Porto, B. Crosignani, and E. DelRe
Phys. Rev. E 89, 052118 (2014) - Published 13 May, 2014
Gregory Bulnes Cuetara, Massimiliano Esposito, and Alberto Imparato
Phys. Rev. E 89, 052119 (2014) - Published 13 May, 2014
Alain Olivetti, Guillaume Labeyrie, and Robin Kaiser
Phys. Rev. E 89, 052120 (2014) - Published 13 May, 2014
Reinaldo García-García and Daniel Domínguez
Phys. Rev. E 89, 052121 (2014) - Published 14 May, 2014
Jakub Jȩdrak
Phys. Rev. E 89, 052122 (2014) - Published 16 May, 2014
Sandro M. Reia and Osame Kinouchi
Phys. Rev. E 89, 052123 (2014) - Published 16 May, 2014
Joyjit Kundu and R. Rajesh
Phys. Rev. E 89, 052124 (2014) - Published 16 May, 2014
Juan G. Restrepo and James D. Meiss
Phys. Rev. E 89, 052125 (2014) - Published 19 May, 2014
Ho-Kei Chan (陳浩基), Dahai He (贺达海), and Bambi Hu (胡斑比)
Phys. Rev. E 89, 052126 (2014) - Published 19 May, 2014
A. I. Sokolov and M. A. Nikitina
Phys. Rev. E 89, 052127 (2014) - Published 19 May, 2014
J. Salmilehto, P. Solinas, and M. Möttönen
Phys. Rev. E 89, 052128 (2014) - Published 19 May, 2014
Tetsuro Tsuji and Kazuo Aoki
Phys. Rev. E 89, 052129 (2014) - Published 19 May, 2014
Amani Tahat and Jordi Martí
Phys. Rev. E 89, 052130 (2014) - Published 19 May, 2014
Viktor M. Rozenbaum, Yurii A. Makhnovskii, Irina V. Shapochkina, Sheh-Yi Sheu, Dah-Yen Yang, and Sheng Hsien Lin
Phys. Rev. E 89, 052131 (2014) - Published 19 May, 2014
Hai Li, Jian Zou, Wen-Li Yu, Bao-Ming Xu, Jun-Gang Li, and Bin Shao
Phys. Rev. E 89, 052132 (2014) - Published 20 May, 2014
M. L. Lyra, F. A. B. F. de Moura, I. N. de Oliveira, and M. Serva
Phys. Rev. E 89, 052133 (2014) - Published 20 May, 2014
Huiseung Chae, Soon-Hyung Yook, and Yup Kim
Phys. Rev. E 89, 052134 (2014) - Published 22 May, 2014
Mauricio S. Ribeiro, Fernando D. Nobre, and Constantino Tsallis
Phys. Rev. E 89, 052135 (2014) - Published 23 May, 2014
Sarah A. M. Loos, Robert Gernert, and Sabine H. L. Klapp
Phys. Rev. E 89, 052136 (2014) - Published 27 May, 2014
Jacob D. Bekenstein
Phys. Rev. E 89, 052137 (2014) - Published 27 May, 2014
M. Cristina Diamantini and Carlo A. Trugenberger
Phys. Rev. E 89, 052138 (2014) - Published 27 May, 2014
S. Amin Moosavi and Afshin Montakhab
Phys. Rev. E 89, 052139 (2014) - Published 27 May, 2014
Patrick R. Zulkowski and Michael R. DeWeese
Phys. Rev. E 89, 052140 (2014) - Published 27 May, 2014
Kwok Sau Fa
Phys. Rev. E 89, 052141 (2014) - Published 28 May, 2014
Dionissios T. Hristopulos, Manolis P. Petrakis, and Giorgio Kaniadakis
Phys. Rev. E 89, 052142 (2014) - Published 28 May, 2014
Italo'Ivo Lima Dias Pinto, Daniel Escaff, Upendra Harbola, Alexandre Rosas, and Katja Lindenberg
Phys. Rev. E 89, 052143 (2014) - Published 29 May, 2014
A. Ibenskas, M. Šimėnas, and E. E. Tornau
Phys. Rev. E 89, 052144 (2014) - Published 29 May, 2014
Laura J. Lukassen and Martin Oberlack
Phys. Rev. E 89, 052145 (2014) - Published 29 May, 2014
Alexander A. Dubkov and Anna A. Kharcheva
Phys. Rev. E 89, 052146 (2014) - Published 30 May, 2014
Elena Agliari, Alexander Blumen, and Davide Cassi
Phys. Rev. E 89, 052147 (2014) - Published 30 May, 2014
Z. C. Tu
Phys. Rev. E 89, 052148 (2014) - Published 30 May, 2014
Nagi Khalil, Vicente Garzó, and Andrés Santos
Phys. Rev. E 89, 052201 (2014) - Published 5 May, 2014
Chunning Ji, Ante Munjiza, Eldad Avital, Dong Xu, and John Williams
Phys. Rev. E 89, 052202 (2014) - Published 7 May, 2014
Patrick Mutabaruka, Jean-Yves Delenne, Kenichi Soga, and Farhang Radjai
Phys. Rev. E 89, 052203 (2014) - Published 9 May, 2014
Tess Homan, Christa Gjaltema, and Devaraj van der Meer
Phys. Rev. E 89, 052204 (2014) - Published 9 May, 2014
A sand bed consisting of fine particles compactifies when it is subjected to a shock. The authors find experimentally that due to the air trapped within the sand bed, compaction is larger at higher ambient pressure, and attribute this counterintuitive response to a decrease of the friction between the grains inside the bed.
Jorge González-Gutiérrez, J. L. Carrillo-Estrada, and J. C. Ruiz-Suárez
Phys. Rev. E 89, 052205 (2014) - Published 9 May, 2014
Francisco Vega Reyes, Vicente Garzó, and Nagi Khalil
Phys. Rev. E 89, 052206 (2014) - Published 13 May, 2014
Yuliang Jin, James G. Puckett, and Hernán A. Makse
Phys. Rev. E 89, 052207 (2014) - Published 13 May, 2014
Theo Siu, Jake Cotton, Gregory Mattson, and Troy Shinbrot
Phys. Rev. E 89, 052208 (2014) - Published 14 May, 2014
J. Javier Brey, P. Maynar, M. I. García de Soria, and V. Buzón
Phys. Rev. E 89, 052209 (2014) - Published 14 May, 2014
Itzhak Fouxon
Phys. Rev. E 89, 052210 (2014) - Published 19 May, 2014
H. J. H. Brouwers
Phys. Rev. E 89, 052211 (2014) - Published 21 May, 2014
S. Ardanza-Trevijano, Iker Zuriguel, Roberto Arévalo, and Diego Maza
Phys. Rev. E 89, 052212 (2014) - Published 23 May, 2014
Thomas Pähtz, Eric J. R. Parteli, Jasper F. Kok, and Hans J. Herrmann
Phys. Rev. E 89, 052213 (2014) - Published 30 May, 2014
Takahiro Sakaue, Kyohei Shitara, and Takao Ohta
Phys. Rev. E 89, 052301 (2014) - Published 5 May, 2014
Jingtao Wang, Xiaoduan Li, Xiaoyong Wang, and Jing Guan
Phys. Rev. E 89, 052302 (2014) - Published 5 May, 2014
S. A. Mallory, A. Šarić, C. Valeriani, and A. Cacciuto
Phys. Rev. E 89, 052303 (2014) - Published 6 May, 2014
D. Fragiadakis and C. M. Roland
Phys. Rev. E 89, 052304 (2014) - Published 6 May, 2014
Sayuri Tanaka, Yuma Oki, and Yasuyuki Kimura
Phys. Rev. E 89, 052305 (2014) - Published 9 May, 2014
Zhenhuan Zhang, Sourav Barman, and Gordon F. Christopher
Phys. Rev. E 89, 052306 (2014) - Published 14 May, 2014
N. I. Lebovka, S. Khrapatiy, R. Melnyk, and M. Vygornitskii
Phys. Rev. E 89, 052307 (2014) - Published 14 May, 2014
Moumita Maiti and Claus Heussinger
Phys. Rev. E 89, 052308 (2014) - Published 16 May, 2014
Anne-Laure Vayssade, Choongyeop Lee, Emmanuel Terriac, Fabrice Monti, Michel Cloitre, and Patrick Tabeling
Phys. Rev. E 89, 052309 (2014) - Published 16 May, 2014
M. Belovs and A. Cēbers
Phys. Rev. E 89, 052310 (2014) - Published 20 May, 2014
Glen M. Hocky, Ludovic Berthier, Walter Kob, and David R. Reichman
Phys. Rev. E 89, 052311 (2014) - Published 23 May, 2014
Markus Hilt, Martin Glässl, and Walter Zimmermann
Phys. Rev. E 89, 052312 (2014) - Published 27 May, 2014
Kjetil Thøgersen, Jørgen Kjoshagen Trømborg, Henrik Andersen Sveinsson, Anders Malthe-Sørenssen, and Julien Scheibert
Phys. Rev. E 89, 052401 (2014) - Published 13 May, 2014
Basile Pottier, Emilie Verneuil, Laurence Talini, and Olivier Pierre-Louis
Phys. Rev. E 89, 052403 (2014) - Published 19 May, 2014
Veit Elser
Phys. Rev. E 89, 052404 (2014) - Published 19 May, 2014
E. Willman, L. Seddon, M. Osman, A. Bulak, R. James, S. E. Day, and F. A. Fernandez
Phys. Rev. E 89, 052501 (2014) - Published 1 May, 2014
Epifanio G. Virga
Phys. Rev. E 89, 052502 (2014) - Published 8 May, 2014
M. V. Rasna, K. P. Zuhail, R. Manda, P. Paik, W. Haase, and Surajit Dhara
Phys. Rev. E 89, 052503 (2014) - Published 8 May, 2014
Badel L. Mbanga, Kate K. Voorhes, and Timothy J. Atherton
Phys. Rev. E 89, 052504 (2014) - Published 15 May, 2014
Qingkun Liu, Jianwei Tang, Yuan Zhang, Angel Martinez, Shaowei Wang, Sailing He, Timothy J. White, and Ivan I. Smalyukh
Phys. Rev. E 89, 052505 (2014) - Published 15 May, 2014
This work studies dispersions of gold nanorods at high concentrations in a liquid crystal matrix. The authors show that the liquid crystal orientational ordering aligns rodlike nanoparticles giving rise to strong polarization-dependent plasmonic properties, absorption, and scattering, abnormal dispersions of refractive index, and enhanced optical birefringence with sign reversal.
E. V. Aksenova, D. I. Kokorin, and V. P. Romanov
Phys. Rev. E 89, 052506 (2014) - Published 15 May, 2014
Alexei Krekhov, Werner Decker, Werner Pesch, Nándor Éber, Péter Salamon, Balázs Fekete, and Ágnes Buka
Phys. Rev. E 89, 052507 (2014) - Published 19 May, 2014
K. S. Krishnamurthy
Phys. Rev. E 89, 052508 (2014) - Published 22 May, 2014
Tushar Kanti Bose and Jayashree Saha
Phys. Rev. E 89, 052509 (2014) - Published 23 May, 2014
Pau Guillamat, Francesc Sagués, and Jordi Ignés-Mullol
Phys. Rev. E 89, 052510 (2014) - Published 27 May, 2014
Lidiane Omena, Pedro B. de Melo, Maria S. S. Pereira, and Italo N. de Oliveira
Phys. Rev. E 89, 052511 (2014) - Published 27 May, 2014
B. R. Matos, E. I. Santiago, J. F. Q. Rey, and F. C. Fonseca
Phys. Rev. E 89, 052601 (2014) - Published 19 May, 2014
Luca Tubiana
Phys. Rev. E 89, 052602 (2014) - Published 27 May, 2014
M. G. Guenza
Phys. Rev. E 89, 052603 (2014) - Published 27 May, 2014
Bojan Božič, Jemal Guven, Pablo Vázquez-Montejo, and Saša Svetina
Phys. Rev. E 89, 052701 (2014) - Published 2 May, 2014
R. P. Linna, J. E. Moisio, P. M. Suhonen, and K. Kaski
Phys. Rev. E 89, 052702 (2014) - Published 6 May, 2014
I. Pinkoviezky and N. S. Gov
Phys. Rev. E 89, 052703 (2014) - Published 12 May, 2014
Jiang Zhuang, Guopeng Wei, Rika Wright Carlsen, Matthew R. Edwards, Radu Marculescu, Paul Bogdan, and Metin Sitti
Phys. Rev. E 89, 052704 (2014) - Published 12 May, 2014
Christopher P. Calderon, Lucien E. Weiss, and W. E. Moerner
Phys. Rev. E 89, 052705 (2014) - Published 12 May, 2014
Fabio Giavazzi and Alberto Vailati
Phys. Rev. E 89, 052706 (2014) - Published 13 May, 2014
Per Sebastian Skardal, Alain Karma, and Juan G. Restrepo
Phys. Rev. E 89, 052707 (2014) - Published 14 May, 2014
Daniel A. Charlebois, Gábor Balázsi, and Mads Kærn
Phys. Rev. E 89, 052708 (2014) - Published 14 May, 2014
Joshua V. Ross and Benjamin J. Binder
Phys. Rev. E 89, 052709 (2014) - Published 15 May, 2014
P. Ares, C. Garcia-Doval, A. Llauró, J. Gómez-Herrero, M. J. van Raaij, and P. J. de Pablo
Phys. Rev. E 89, 052710 (2014) - Published 16 May, 2014
Nicholas Guttenberg, John Toner, and Yuhai Tu
Phys. Rev. E 89, 052711 (2014) - Published 16 May, 2014
Hua Ke, Mark R. Tinsley, Aaron Steele, Fang Wang, and Kenneth Showalter
Phys. Rev. E 89, 052712 (2014) - Published 19 May, 2014
M. N. Shneider and M. Pekker
Phys. Rev. E 89, 052713 (2014) - Published 23 May, 2014
Andrzej Pękalski and Janusz Szwabiński
Phys. Rev. E 89, 052714 (2014) - Published 28 May, 2014
Sebastian Weitz, Stéphane Blanco, Richard Fournier, Jacques Gautrais, Christian Jost, and Guy Theraulaz
Phys. Rev. E 89, 052715 (2014) - Published 30 May, 2014
Paweł Fiedor
Phys. Rev. E 89, 052801 (2014) - Published 1 May, 2014
E. Cator and P. Van Mieghem
Phys. Rev. E 89, 052802 (2014) - Published 1 May, 2014
Gaetano Valenza, Luca Citi, Enzo Pasquale Scilingo, and Riccardo Barbieri
Phys. Rev. E 89, 052803 (2014) - Published 9 May, 2014
Cheng Ye, Richard C. Wilson, César H. Comin, Luciano da F. Costa, and Edwin R. Hancock
Phys. Rev. E 89, 052804 (2014) - Published 12 May, 2014
James Kunert, Eli Shlizerman, and J. Nathan Kutz
Phys. Rev. E 89, 052805 (2014) - Published 12 May, 2014
Akitomo Watanabe and Kousuke Yakubo
Phys. Rev. E 89, 052806 (2014) - Published 12 May, 2014
Boris S. Kerner, Sergey L. Klenov, and Michael Schreckenberg
Phys. Rev. E 89, 052807 (2014) - Published 13 May, 2014
André M. Timpanaro and Carmen P. C. Prado
Phys. Rev. E 89, 052808 (2014) - Published 14 May, 2014
Meredith D. Reitz, Douglas J. Jerolmack, Eric Lajeunesse, Angela Limare, Olivier Devauchelle, and François Métivier
Phys. Rev. E 89, 052809 (2014) - Published 15 May, 2014
Yi Sun and Ilya Timofeyev
Phys. Rev. E 89, 052810 (2014) - Published 19 May, 2014
Kihong Chung, Yongjoo Baek, Daniel Kim, Meesoon Ha, and Hawoong Jeong
Phys. Rev. E 89, 052811 (2014) - Published 21 May, 2014
N. R. Moloney and J. Davidsen
Phys. Rev. E 89, 052812 (2014) - Published 22 May, 2014
Zhen Wang, Lin Wang, and Matjaž Perc
Phys. Rev. E 89, 052813 (2014) - Published 27 May, 2014
Klaus M. Frahm, Young-Ho Eom, and Dima L. Shepelyansky
Phys. Rev. E 89, 052814 (2014) - Published 28 May, 2014
Rubén J. Sánchez-García, Emanuele Cozzo, and Yamir Moreno
Phys. Rev. E 89, 052815 (2014) - Published 29 May, 2014
Fabio Ciulla, Nicola Perra, Andrea Baronchelli, and Alessandro Vespignani
Phys. Rev. E 89, 052816 (2014) - Published 30 May, 2014
Krishna Jayant, Kshitij Auluck, Sergio Rodriguez, Yingqiu Cao, and Edwin C. Kan
Phys. Rev. E 89, 052817 (2014) - Published 30 May, 2014
Davide Faranda, Xavier Leoncini, and Sandro Vaienti
Phys. Rev. E 89, 052901 (2014) - Published 2 May, 2014
Malee Sutthiopad, Jiraporn Luengviriya, Porramain Porjai, Boosayarat Tomapatanaget, Stefan C. Müller, and Chaiya Luengviriya
Phys. Rev. E 89, 052902 (2014) - Published 8 May, 2014
A. Pimenov, E. A. Viktorov, S. P. Hegarty, T. Habruseva, G. Huyet, D. Rachinskii, and A. G. Vladimirov
Phys. Rev. E 89, 052903 (2014) - Published 8 May, 2014
Eusebius J. Doedel and Carlos L. Pando L.
Phys. Rev. E 89, 052904 (2014) - Published 9 May, 2014
R. Yamapi and G. Filatrella
Phys. Rev. E 89, 052905 (2014) - Published 12 May, 2014
Gouhei Tanaka, Kai Morino, Hiroaki Daido, and Kazuyuki Aihara
Phys. Rev. E 89, 052906 (2014) - Published 12 May, 2014
M. A. Tsyganov, G. R. Ivanitsky, and E. P. Zemskov
Phys. Rev. E 89, 052907 (2014) - Published 12 May, 2014
Chenbo Fu, Weijie Lin, Liang Huang, and Xingang Wang
Phys. Rev. E 89, 052908 (2014) - Published 12 May, 2014
Julien Siebert, Sergio Alonso, Markus Bär, and Eckehard Schöll
Phys. Rev. E 89, 052909 (2014) - Published 14 May, 2014
Toshiki Teramura and Sadayoshi Toh
Phys. Rev. E 89, 052910 (2014) - Published 14 May, 2014
Rodolfo A. Jalabert, Guillaume Weick, Hans A. Weidenmüller, and Dietmar Weinmann
Phys. Rev. E 89, 052911 (2014) - Published 22 May, 2014
Tanmoy Banerjee and Debarati Ghosh
Phys. Rev. E 89, 052912 (2014) - Published 23 May, 2014
André L. P. Livorati, Orestis Georgiou, Carl P. Dettmann, and Edson D. Leonel
Phys. Rev. E 89, 052913 (2014) - Published 23 May, 2014
R. Gopal, V. K. Chandrasekar, A. Venkatesan, and M. Lakshmanan
Phys. Rev. E 89, 052914 (2014) - Published 27 May, 2014
Shally Loomba, Harleen Kaur, Rama Gupta, C. N. Kumar, and Thokala Soloman Raju
Phys. Rev. E 89, 052915 (2014) - Published 28 May, 2014
Yoshito Hirata
Phys. Rev. E 89, 052916 (2014) - Published 29 May, 2014
E. Wamba, S. Sabari, K. Porsezian, A. Mohamadou, and T. C. Kofané
Phys. Rev. E 89, 052917 (2014) - Published 29 May, 2014
Amarendra K. Sarma, Mohammad-Ali Miri, Ziad H. Musslimani, and Demetrios N. Christodoulides
Phys. Rev. E 89, 052918 (2014) - Published 30 May, 2014
F. M. Moukam Kakmeni, E. M. Inack, and E. M. Yamakou
Phys. Rev. E 89, 052919 (2014) - Published 30 May, 2014
Roberto Benzi, Emily S. C. Ching, and C. K. Wong
Phys. Rev. E 89, 053001 (2014) - Published 6 May, 2014
Kaustav Chaudhury, Palash V. Acharya, and Suman Chakraborty
Phys. Rev. E 89, 053002 (2014) - Published 6 May, 2014
Tobias Baier, Julia Dölger, and Steffen Hardt
Phys. Rev. E 89, 053003 (2014) - Published 6 May, 2014
B. L. Smorodin, B. I. Myznikova, and S. M. Ishutov
Phys. Rev. E 89, 053004 (2014) - Published 7 May, 2014
P. Mininni, P. Dmitruk, P. Odier, J.-F. Pinton, N. Plihon, G. Verhille, R. Volk, and M. Bourgoin
Phys. Rev. E 89, 053005 (2014) - Published 8 May, 2014
Ching-Yao Chen, Yu-Sheng Huang, and José A. Miranda
Phys. Rev. E 89, 053006 (2014) - Published 9 May, 2014
Dahua Shou, Lin Ye, and Jintu Fan
Phys. Rev. E 89, 053007 (2014) - Published 12 May, 2014
Subramanian Annamalai, S. Balachandar, and Manoj K. Parmar
Phys. Rev. E 89, 053008 (2014) - Published 12 May, 2014
Karnig O. Mikaelian
Phys. Rev. E 89, 053009 (2014) - Published 12 May, 2014
Sadao Ota, Tongcang Li, Yimin Li, Ziliang Ye, Anna Labno, Xiaobo Yin, Mohammad-Reza Alam, and Xiang Zhang
Phys. Rev. E 89, 053010 (2014) - Published 13 May, 2014
Ceyda Sanlı, Detlef Lohse, and Devaraj van der Meer
Phys. Rev. E 89, 053011 (2014) - Published 13 May, 2014
S. V. Nedea, A. A. van Steenhoven, A. J. Markvoort, P. Spijker, and D. Giordano
Phys. Rev. E 89, 053012 (2014) - Published 14 May, 2014
E. S. Benilov
Phys. Rev. E 89, 053013 (2014) - Published 16 May, 2014
Kirk Spragg, Sebastien Letout, R. Ernst, Alfred Sneyd, and Yves Fautrelle
Phys. Rev. E 89, 053014 (2014) - Published 16 May, 2014
Jarrod Schiffbauer and Gilad Yossifon
Phys. Rev. E 89, 053015 (2014) - Published 19 May, 2014
Rose E. Honey, Robert Hershberger, Russell J. Donnelly, and Diogo Bolster
Phys. Rev. E 89, 053016 (2014) - Published 19 May, 2014
Toshihiko Hiejima
Phys. Rev. E 89, 053017 (2014) - Published 19 May, 2014
Miklós Vécsei, Mathias Dietzel, and Steffen Hardt
Phys. Rev. E 89, 053018 (2014) - Published 20 May, 2014
Gabriel D. Carvalho, Hermes Gadêlha, and José A. Miranda
Phys. Rev. E 89, 053019 (2014) - Published 21 May, 2014
Shubhadeep Mandal, Kaustav Chaudhury, and Suman Chakraborty
Phys. Rev. E 89, 053020 (2014) - Published 22 May, 2014
T. Bobinski, S. Goujon-Durand, and J. E. Wesfreid
Phys. Rev. E 89, 053021 (2014) - Published 23 May, 2014
Qing Li and K. H. Luo
Phys. Rev. E 89, 053022 (2014) - Published 23 May, 2014
U. M. Scheven, S. Khirevich, A. Daneyko, and U. Tallarek
Phys. Rev. E 89, 053023 (2014) - Published 28 May, 2014
Aditya Bandopadhyay, Uddipta Ghosh, and Suman Chakraborty
Phys. Rev. E 89, 053024 (2014) - Published 29 May, 2014
Abutrab A. Aliverdiev, Dimitri Batani, Luca Antonelli, Katarzyna Jakubowska, Riccardo Dezulian, Anise A. Amirova, Gaji M. Gajiev, Manoranjan Khan, and Hem C. Pant
Phys. Rev. E 89, 053101 (2014) - Published 12 May, 2014
J. Stephens, J. Dickens, and A. Neuber
Phys. Rev. E 89, 053102 (2014) - Published 12 May, 2014
L. Friedland and A. G. Shagalov
Phys. Rev. E 89, 053103 (2014) - Published 13 May, 2014
C.-S. Jao and L.-N. Hau
Phys. Rev. E 89, 053104 (2014) - Published 22 May, 2014
Daniel O. Gómez, Cecilia Bejarano, and Pablo D. Mininni
Phys. Rev. E 89, 053105 (2014) - Published 23 May, 2014
C. R. Weber, D. S. Clark, A. W. Cook, L. E. Busby, and H. F. Robey
Phys. Rev. E 89, 053106 (2014) - Published 27 May, 2014
O. J. Pike and S. J. Rose
Phys. Rev. E 89, 053107 (2014) - Published 29 May, 2014
L. Couëdel, S. Zhdanov, V. Nosenko, A. V. Ivlev, H. M. Thomas, and G. E. Morfill
Phys. Rev. E 89, 053108 (2014) - Published 30 May, 2014
This work describes a detailed experimental study of synchronization of oscillating particles in a two-dimensional plasma crystal and subsequent crystal melting induced by wave growth of the oscillations. Such two-dimensional plasmas can be considered models for studying emergence of synchronization and symmetry breaking in nonlinear systems.
Epifanio G. Virga
Phys. Rev. E 89, 053201 (2014) - Published 6 May, 2014
Edgar Ávalos and Surajit Sen
Phys. Rev. E 89, 053202 (2014) - Published 13 May, 2014
A. Degiron and D. R. Smith
Phys. Rev. E 89, 053203 (2014) - Published 27 May, 2014
M. T. Vu and P. M. Adler
Phys. Rev. E 89, 053301 (2014) - Published 8 May, 2014
Brian M. Haines, Fernando F. Grinstein, and James R. Fincke
Phys. Rev. E 89, 053302 (2014) - Published 8 May, 2014
The authors present an improved strategy for performing simulations of inertial confinement fusion. The commonly used strategy of beginning the simulation in two dimensions and later mapping it to three dimensions has significant shortcomings. The authors demonstrate that introducing suitable nonuniform perturbations at the time of the mapping produces results in good agreement with purely three-dimensional simulations and with available experimental data.
Kamalesh Sainath and Fernando L. Teixeira
Phys. Rev. E 89, 053303 (2014) - Published 8 May, 2014
O. Rozenbaum and S. Rolland du Roscoat
Phys. Rev. E 89, 053304 (2014) - Published 13 May, 2014
Wei Zhang, Hongwei Li, and Xiaonan Wu
Phys. Rev. E 89, 053305 (2014) - Published 13 May, 2014
A. Bağcı and P. E. Hoggan
Phys. Rev. E 89, 053307 (2014) - Published 13 May, 2014
Antoine Riaud, Shufang Zhao, Kai Wang, Yi Cheng, and Guangsheng Luo
Phys. Rev. E 89, 053308 (2014) - Published 13 May, 2014
Janez Perko and Ravi A. Patel
Phys. Rev. E 89, 053309 (2014) - Published 16 May, 2014
Jens Zudrop, Sabine Roller, and Pietro Asinari
Phys. Rev. E 89, 053310 (2014) - Published 19 May, 2014
S. R. Gujarathi, C. L. Farrow, C. Glosser, L. Granlund, and P. M. Duxbury
Phys. Rev. E 89, 053311 (2014) - Published 20 May, 2014
A. Amiri Delouei, M. Nazari, M. H. Kayhani, and S. Succi
Phys. Rev. E 89, 053312 (2014) - Published 20 May, 2014
Abdellah Ait moussa and Bahaeddin Jassemnejad
Phys. Rev. E 89, 053313 (2014) - Published 21 May, 2014
Clara Salueña and Josep Bonet Avalos
Phys. Rev. E 89, 053314 (2014) - Published 21 May, 2014
N. V. Elkina, A. M. Fedotov, C. Herzing, and H. Ruhl
Phys. Rev. E 89, 053315 (2014) - Published 23 May, 2014
T. Santos-Silva, P. I. C. Teixeira, C. Anquetil-Deck, and D. J. Cleaver
Phys. Rev. E 89, 053316 (2014) - Published 28 May, 2014
A. Montessori, G. Falcucci, P. Prestininzi, M. La Rocca, and S. Succi
Phys. Rev. E 89, 053317 (2014) - Published 29 May, 2014
Loukas Skarpalezos, Panos Argyrakis, and Vyacheslav S. Vikhrenko
Phys. Rev. E 89, 053318 (2014) - Published 29 May, 2014
Daniel H. Gebremedhin and Charles A. Weatherford
Phys. Rev. E 89, 053319 (2014) - Published 30 May, 2014
H. Liang, B. C. Shi, Z. L. Guo, and Z. H. Chai
Phys. Rev. E 89, 053320 (2014) - Published 30 May, 2014
A. L. Alexe-Ionescu, G. Barbero, and I. Lelidis
Phys. Rev. E 89, 056401 (2014) - Published 23 May, 2014
Atsushi Sawada
Phys. Rev. E 89, 056402 (2014) - Published 23 May, 2014
George N. Frantziskonis
Phys. Rev. E 89, 059901 (2014) - Published 7 May, 2014
Abutrab A. Aliverdiev, Dimitri Batani, Luca Antonelli, Katarzyna Jakubowska, Riccardo Dezulian, Anise A. Amirova, Gaji M. Gajiev, Manoranjan Khan, and Hem C. Pant
Phys. Rev. E 89, 059902 (2014) - Published 16 May, 2014
S. M. Taghavi and R. G. Larson
Phys. Rev. E 89, 059903 (2014) - Published 22 May, 2014
D. Johann, D. Goswami, and K. Kruse
Phys. Rev. E 89, 059904 (2014) - Published 28 May, 2014