Volume 130, Issue 23 Week Ending 9 June 2023 | On the Cover Optical (main) and scanning electron (inset) micrographs of a device composed of two double quantum dots coupled to a superconducting cavity. From the article Probing Two Driven Double Quantum Dots Strongly Coupled to a Cavity Si-Si Gu, Sigmund Kohler, Yong-Qiang Xu, Rui Wu, Shun-Li Jiang, Shu-Kun Ye, Ting Lin, Bao-Chuan Wang, Hai-Ou Li, Gang Cao, and Guo-Ping Guo Phys. Rev. Lett. 130, 233602 (2023) | | | | Not an APS member? Join today to start connecting with a community of more than 50,000 physicists. | | | | Featured in Physics Editors' Suggestion Pedro D. Manrique, Frank Yingjie Huo, Sara El Oud, Minzhang Zheng, Lucia Illari, and Neil F. Johnson Phys. Rev. Lett. 130, 237401 (2023) – Published 5 June 2023 | A theory derived from nonlinear fluid dynamics is able to reproduce the formation dynamics of online hate communities—offering insights that could inform public policies. | | | | | | Featured in Physics Editors' Suggestion Sattvic Ray, Jie Zhang, and Zvonimir Dogic Phys. Rev. Lett. 130, 238301 (2023) – Published 9 June 2023 | The chaotic motion in a fluid of microscopic, actively moving rods can be harnessed to drive the rotation of a small propeller-like object. | | | | | | Editors' Suggestion Basile Radisson and Eva Kanso Phys. Rev. Lett. 130, 236102 (2023) – Published 8 June 2023 | Elastic shape transitions can be predicted from geometric symmetries and symmetry-breaking mechanisms, providing universal design rules for these transitions. | | | | | | Editors' Suggestion J. Sánchez-Barriga, O. J. Clark, M. G. Vergniory, M. Krivenkov, A. Varykhalov, O. Rader, and L. M. Schoop Phys. Rev. Lett. 130, 236402 (2023) – Published 9 June 2023 | Experimental evidence for the existence of three-dimensional Dirac fermions in Au2Pb confirms a theoretically predicted Dirac semimetal phase with a fourfold degenerate Dirac crossing protected by rotational lattice symmetry. | | | | | | Editors' Suggestion Maria Saladina, Christopher Wöpke, Clemens Göhler, Ivan Ramirez, Olga Gerdes, Chao Liu, Ning Li, Thomas Heumüller, Christoph J. Brabec, Karsten Walzer, Martin Pfeiffer, and Carsten Deibel Phys. Rev. Lett. 130, 236403 (2023) – Published 9 June 2023 | The density of states in organic disordered semiconductors is shown to follow a power-law distribution over a broad range of energies. | | | | | | Quantum Information, Science, and Technology | John H. Selby, David Schmid, Elie Wolfe, Ana Belén Sainz, Ravi Kunjwal, and Robert W. Spekkens Phys. Rev. Lett. 130, 230201 (2023) – Published 6 June 2023 | | | Sandro Donadi, Luca Ferialdi, and Angelo Bassi Phys. Rev. Lett. 130, 230202 (2023) – Published 9 June 2023 | | | Etienne Granet, Carolyn Zhang, and Henrik Dreyer Phys. Rev. Lett. 130, 230401 (2023) – Published 8 June 2023 | | | Vikram Ravindranath and Xiao Chen Phys. Rev. Lett. 130, 230402 (2023) – Published 9 June 2023 | | | Matteo Ippoliti, Yaodong Li, Tibor Rakovszky, and Vedika Khemani Phys. Rev. Lett. 130, 230403 (2023) – Published 9 June 2023 | | | Takashi Mori and Tatsuhiko Shirai Phys. Rev. Lett. 130, 230404 (2023) – Published 9 June 2023 | | | Cosmology, Astrophysics, and Gravitation | K. Ramanathan, N. Klimovich, R. Basu Thakur, B. H. Eom, H. G. Leduc, S. Shu, A. D. Beyer, and P. K. Day Phys. Rev. Lett. 130, 231001 (2023) – Published 9 June 2023 | | | Antonio Enea Romano and Mairi Sakellariadou Phys. Rev. Lett. 130, 231401 (2023) – Published 8 June 2023 | | | Monica Jinwoo Kang, Craig Lawrie, Ki-Hong Lee, and Jaewon Song Phys. Rev. Lett. 130, 231601 (2023) – Published 7 June 2023 | | | I. Adachi et al. (Belle II Collaboration) Phys. Rev. Lett. 130, 231801 (2023) – Published 7 June 2023 | | | P. Abratenko et al. (MicroBooNE Collaboration) Phys. Rev. Lett. 130, 231802 (2023) – Published 9 June 2023 | | | M. Ablikim et al. (BESIII Collaboration) Phys. Rev. Lett. 130, 231901 (2023) – Published 6 June 2023 | | | Luis Altenkort, Olaf Kaczmarek, Rasmus Larsen, Swagato Mukherjee, Peter Petreczky, Hai-Tao Shu, and Simon Stendebach (HotQCD Collaboration) Phys. Rev. Lett. 130, 231902 (2023) – Published 6 June 2023 | | | S. Giraud et al. Phys. Rev. Lett. 130, 232301 (2023) – Published 7 June 2023 | | | Atomic, Molecular, and Optical Physics | Jiaqi Zhou, Shaokui Jia, Xiaoqing Hu, Enliang Wang, Xiaorui Xue, Yong Wu, Jianguo Wang, Alexander Dorn, and Xueguang Ren Phys. Rev. Lett. 130, 233001 (2023) – Published 7 June 2023 | | | Rasheed Shaik, Hari R. Varma, Mohamed El-Amine Madjet, Fulu Zheng, Thomas Frauenheim, and Himadri S. Chakraborty Phys. Rev. Lett. 130, 233201 (2023) – Published 7 June 2023 | | | Sergei Lepeshov, Nadine Meyer, Patrick Maurer, Oriol Romero-Isart, and Romain Quidant Phys. Rev. Lett. 130, 233601 (2023) – Published 8 June 2023 | | | Si-Si Gu, Sigmund Kohler, Yong-Qiang Xu, Rui Wu, Shun-Li Jiang, Shu-Kun Ye, Ting Lin, Bao-Chuan Wang, Hai-Ou Li, Gang Cao, and Guo-Ping Guo Phys. Rev. Lett. 130, 233602 (2023) – Published 9 June 2023 | | | Yiming Pan, Moshe-Ishay Cohen, and Mordechai Segev Phys. Rev. Lett. 130, 233801 (2023) – Published 7 June 2023 | | | Condensed Matter and Materials | Chao Zhang, Barbara Capogrosso-Sansone, Massimo Boninsegni, Nikolay V. Prokof'ev, and Boris V. Svistunov Phys. Rev. Lett. 130, 236001 (2023) – Published 9 June 2023 | | | Florian Vogel and Matthias Fuchs Phys. Rev. Lett. 130, 236101 (2023) – Published 7 June 2023 | | | Editors' Suggestion Basile Radisson and Eva Kanso Phys. Rev. Lett. 130, 236102 (2023) – Published 8 June 2023 | Elastic shape transitions can be predicted from geometric symmetries and symmetry-breaking mechanisms, providing universal design rules for these transitions. | | | | | | Grégoire Breyton, Hakim Amara, Jaysen Nelayah, Jérôme Creuze, Hazar Guesmi, Damien Alloyeau, Guillaume Wang, and Christian Ricolleau Phys. Rev. Lett. 130, 236201 (2023) – Published 9 June 2023 | | | Florian Knoop, Thomas A. R. Purcell, Matthias Scheffler, and Christian Carbogno Phys. Rev. Lett. 130, 236301 (2023) – Published 7 June 2023 | | | Luciano Loris Viteritti, Riccardo Rende, and Federico Becca Phys. Rev. Lett. 130, 236401 (2023) – Published 5 June 2023 | | | Editors' Suggestion J. Sánchez-Barriga, O. J. Clark, M. G. Vergniory, M. Krivenkov, A. Varykhalov, O. Rader, and L. M. Schoop Phys. Rev. Lett. 130, 236402 (2023) – Published 9 June 2023 | Experimental evidence for the existence of three-dimensional Dirac fermions in Au2Pb confirms a theoretically predicted Dirac semimetal phase with a fourfold degenerate Dirac crossing protected by rotational lattice symmetry. | | | | | | Editors' Suggestion Maria Saladina, Christopher Wöpke, Clemens Göhler, Ivan Ramirez, Olga Gerdes, Chao Liu, Ning Li, Thomas Heumüller, Christoph J. Brabec, Karsten Walzer, Martin Pfeiffer, and Carsten Deibel Phys. Rev. Lett. 130, 236403 (2023) – Published 9 June 2023 | The density of states in organic disordered semiconductors is shown to follow a power-law distribution over a broad range of energies. | | | | | | Jonah Herzog-Arbeitman, Zhi-Da Song, Luis Elcoro, and B. Andrei Bernevig Phys. Rev. Lett. 130, 236601 (2023) – Published 6 June 2023 | | | César González-Ruano, Diego Caso, Jabir Ali Ouassou, Coriolan Tiusan, Yuan Lu, Jacob Linder, and Farkhad G. Aliev Phys. Rev. Lett. 130, 237001 (2023) – Published 7 June 2023 | | | V. Fernández Becerra, Mircea Trif, and Timo Hyart Phys. Rev. Lett. 130, 237002 (2023) – Published 7 June 2023 | | | Statistical Physics; Classical, Nonlinear, and Complex Systems | Ning Yang, Chao Tang, and Yuhai Tu Phys. Rev. Lett. 130, 237101 (2023) – Published 7 June 2023 | | | Satya N. Majumdar, Francesco Mori, and Pierpaolo Vivo Phys. Rev. Lett. 130, 237102 (2023) – Published 8 June 2023 | | | I. Gershenzon, B. Lacroix-A-Chez-Toine, O. Raz, E. Subag, and O. Zeitouni Phys. Rev. Lett. 130, 237103 (2023) – Published 8 June 2023 | | | Featured in Physics Editors' Suggestion Pedro D. Manrique, Frank Yingjie Huo, Sara El Oud, Minzhang Zheng, Lucia Illari, and Neil F. Johnson Phys. Rev. Lett. 130, 237401 (2023) – Published 5 June 2023 | A theory derived from nonlinear fluid dynamics is able to reproduce the formation dynamics of online hate communities—offering insights that could inform public policies. | | | | | | Polymers, Chemical Physics, Soft Matter, and Biological Physics | Saraswat Bhattacharyya and Julia M. Yeomans Phys. Rev. Lett. 130, 238201 (2023) – Published 6 June 2023 | | | Gerhard Jung, Giulio Biroli, and Ludovic Berthier Phys. Rev. Lett. 130, 238202 (2023) – Published 9 June 2023 | | | Featured in Physics Editors' Suggestion Sattvic Ray, Jie Zhang, and Zvonimir Dogic Phys. Rev. Lett. 130, 238301 (2023) – Published 9 June 2023 | The chaotic motion in a fluid of microscopic, actively moving rods can be harnessed to drive the rotation of a small propeller-like object. | | | | | | R. J. J. Mackenbach, J. H. E. Proll, and P. Helander Phys. Rev. Lett. 130, 239901 (2023) – Published 7 June 2023 | | | I. J. Arnquist et al. (Majorana Collaboration) Phys. Rev. Lett. 130, 239902 (2023) – Published 9 June 2023 | | | | |
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