Volume 5, Issue 1 (partial) January - March 2023 | | Advertisement Witness groundbreaking physics research, network with potential employers, and prepare for future success at March Meeting 2023. Regular registration rates for one of the largest and most exciting conferences in physics is open through February 28. Register today » | | | | | Not an APS member? Join today to start connecting with a community of more than 50,000 physicists. | | | | Editors' Suggestion K. N. Komagata, V. J. Wittwer, T. Südmeyer, L. Emmenegger, and M. Gianella Phys. Rev. Research 5, 013047 (2023) – Published 26 January 2023 | A scheme to calibrate a frequency-swept frequency comb against a reference laser is developed. Its application to a dual-comb spectrometer based on midinfrared quantum cascade lasers results in molecular spectra with high-frequency accuracy at fast refresh rates. | | | | | | Letter Meng Wang, Mokhtar Adda-Bedia, and Jay Fineberg Phys. Rev. Research 5, L012001 (2023) – Published 9 January 2023 | Highly dissipative slow and faceted cracks, which are topologically conserved, are the norm for slow fractures. Perturbations that momentarily break front topology will cause faceted cracks to lose stability at a critical velocity to rapid continuous crack fronts that have no internal structure. | | | | | | Letter C. Kiehl, D. Wagner, T.-W. Hsu, S. Knappe, C. A. Regal, and T. Thiele Phys. Rev. Research 5, L012002 (2023) – Published 10 January 2023 | Rabi oscillations in atomic vapor cells that exhibit strong population dynamics are in a parameter space outside of theoretical studies of hyperfine coherence defined by spin-exchange collisions. Continuous nondestructive readout of microwave-driven Rabi oscillations is employed to guide a theoretical model and extract vapor-cell parameters from the nontrivial time-domain signals arising from spin-exchange effects. | | | | | | Letter Jonathan Dubois, Ulf Saalmann, and Jan Michael Rost Phys. Rev. Research 5, L012003 (2023) – Published 12 January 2023 | A systematic construction and classification of decoherence-free subspaces (DFS) for open many-body systems is provided by uncovering the relation of DFS to symmetries (constants of motion). | | | | | | Letter Hefeng Wang, Sixia Yu, and Hua Xiang Phys. Rev. Research 5, L012004 (2023) – Published 17 January 2023 | A quantum algorithm that performs multistep quantum computation is proposed, which efficiently solves a type of hierarchical structured search problem. | | | | | | Letter Jie Wang, Jiawei Zang, Jennifer Cano, and Andrew J. Millis Phys. Rev. Research 5, L012005 (2023) – Published 17 January 2023 | In systems comprised of two layers of certain semiconductors stacked with a certain twist angle, the quantum mechanics of electron transfer between layers is believed to give rise to a "staggered flux" physics in which electrons move as though exposed to an extremely strong, but rapidly spatially varying, magnetic field. This staggered flux, heretofore thought of as a theoretical construct, is shown to give rise to dramatic, observable behavior, including "Hofstadter butterfly" structures in the electron spectrum, sign reversals in the Hall effect, and edge currents in systems with junctions or spatially varying interlayer potentials. | | | | | | Letter Ming-Cheng Liang, Yu-Dong Wei, Long Zhang, Xu-Jie Wang, Han Zhang, Wen-Wei Wang, Wei Qi, Xiong-Jun Liu, and Xibo Zhang Phys. Rev. Research 5, L012006 (2023) – Published 17 January 2023 | An experimental realization of the Qi-Wu-Zhang model for the quantum anomalous Hall effect is achieved based on ultracold fermions with two-dimensional spin-orbit coupling. A robust experimental protocol of pump-probe quench measurement is developed to precisely determine, with minimal heating, the properties of topological quantum systems with a limited lifetime. | | | | | | Letter M. G. Clerc, S. Echeverria-Alar, L. A. Letelier, and C. Núñez-Barra Phys. Rev. Research 5, L012007 (2023) – Published 18 January 2023 | A theoretical description of the emergence, propagation, and stabilization of ring patterns beyond Turing instability is inspired by experiments in dye-doped liquid crystals. | | | | | | Letter Domenico Di Sante, Bongjae Kim, Werner Hanke, Tim Wehling, Cesare Franchini, Ronny Thomale, and Giorgio Sangiovanni Phys. Rev. Research 5, L012008 (2023) – Published 19 January 2023 | The Coulomb interaction's profile in several kagome metals is studied by using first-principles cRPA calculations and a universal scaling of the long-range behavior is unveiled. | | | | | | Letter Yuchi He, Kang Yang, Jonas B. Hauck, Emil J. Bergholtz, and Dante M. Kennes Phys. Rev. Research 5, L012009 (2023) – Published 26 January 2023 | Unconventional superconductity can be induced by electron–electron repulsion and is influenced by the lattice symmetries. Here, various types of unconventional superconductivity are shown to be realized on the square and the honeycomb lattice with sublattice potentials. | | | | | | Letter Aria Mansouri Tehrani, Jian-Rui Soh, Jana Pásztorová, Maximilian E. Merkel, Ivica Živković, Henrik M. Rønnow, and Nicola A. Spaldin Phys. Rev. Research 5, L012010 (2023) – Published 26 January 2023 | A combined density functional theory and resonant elastic x-ray scattering technique is implemented to demonstrate the role of charge multipole correlation and order in a 5d1 double perovskite compound that is driven by a complex coupled spin, charge, multipole, and structural order. | | | | | | Letter Yipeng Wu, Xinlu Xu, Chaojie Zhang, Zan Nie, Mitchell Sinclair, Audrey Farrell, Kenneth A. Marsh, Jianfei Hua, Wei Lu, Warren B. Mori, and Chan Joshi Phys. Rev. Research 5, L012011 (2023) – Published 27 January 2023 | An ultrastrong magnetic vortex and a frequency-upshifted optical vortex are shown to be generated when a relativistic ionization front passes through a Laguerre-Gaussian laser pulse. | | | | | | Letter Kai Qian, David J. Apigo, Karmela Padavić, Keun Hyuk Ahn, Smitha Vishveshwara, and Camelia Prodan Phys. Rev. Research 5, L012012 (2023) – Published 30 January 2023 | Topological phase transitions and Majorana-like, spectral-gap-protected edge states are observed in quasi-one-dimensional mechanical metamaterials, analogous to the Kitaev chain. An analog to parity switching, which forms the basis of Majorana zero mode qubits, is demonstrated. | | | | | | Xingchi Mu, Qianqian Xue, Yan Sun, and Jian Zhou Phys. Rev. Research 5, 013001 (2023) – Published 3 January 2023 | | | Yuangang Deng and Su Yi Phys. Rev. Research 5, 013002 (2023) – Published 3 January 2023 | | | Bowen Zeng and Tao Yu Phys. Rev. Research 5, 013003 (2023) – Published 5 January 2023 | | | Xu-Wen Wang and Yang-Yu Liu Phys. Rev. Research 5, 013004 (2023) – Published 5 January 2023 | | | Yan-Liang Shi, Roxana Zeraati, Anna Levina, and Tatiana A. Engel Phys. Rev. Research 5, 013005 (2023) – Published 6 January 2023 | Neurons in the brain organize in spatially connected networks. This analytical work shows that interactions between neurons in spatially arranged networks generate correlated fluctuations on multiple spatial and temporal scales. The spatial and temporal scales of correlations are interdependent and jointly defined by the connectivity profile. | | | | | | Zhao Lei, Chi Zhang, Yafeng Wang, Zegang Wei, Yu Qian, and Zhigang Zheng Phys. Rev. Research 5, 013006 (2023) – Published 6 January 2023 | | | Hena Das Phys. Rev. Research 5, 013007 (2023) – Published 6 January 2023 | | | Alessandro R. Mazza, Shree Ram Acharya, Patryk Wąsik, Jason Lapano, Jiemin Li, Brianna L. Musico, Veerle Keppens, Christopher T. Nelson, Andrew F. May, Matthew Brahlek, Claudio Mazzoli, Jonathan Pelliciari, Valentina Bisogni, Valentino R. Cooper, and T. Zac Ward Phys. Rev. Research 5, 013008 (2023) – Published 6 January 2023 | | | Davide Cividino, Rebecca Westphal, and Didier Sornette Phys. Rev. Research 5, 013009 (2023) – Published 10 January 2023 | | | Junyin Zhang, Changlong Zhu, Christian Wolff, and Birgit Stiller Phys. Rev. Research 5, 013010 (2023) – Published 11 January 2023 | | | Xavier Durang, Hyerim Ahn, Jae Youn Shim, Hye Yoon Park, and Jae-Hyung Jeon Phys. Rev. Research 5, 013011 (2023) – Published 12 January 2023 | | | Li Zhu, Hanyu Liu, Maddury Somayazulu, Yue Meng, Piotr A. Guńka, Thomas B. Shiell, Curtis Kenney-Benson, Stella Chariton, Vitali B. Prakapenka, Hyeok Yoon, Jarryd A. Horn, Johnpierre Paglione, Roald Hoffmann, R. E. Cohen, and Timothy A. Strobel Phys. Rev. Research 5, 013012 (2023) – Published 12 January 2023 | | | A. Pontin, H. Fu, J. H. Iacoponi, P. F. Barker, and T. S. Monteiro Phys. Rev. Research 5, 013013 (2023) – Published 12 January 2023 | The x-y motion of a nanosphere levitated in a tweezer trap in a cavity has applications as a quantum sensor for the direction of ultraweak external forces. The backaction of the optical field of the cavity rotates the orientation of the x-y modes. An experimental demonstration shows the accurate measurement, control, and even suppression of the change in orientation relative to the lab frame. | | | | | | D. Wirtitsch, G. Wachter, S. Reisenbauer, M. Gulka, V. Ivády, F. Jelezko, A. Gali, M. Nesladek, and M. Trupke Phys. Rev. Research 5, 013014 (2023) – Published 13 January 2023 | | | B. M. Huddart, T. Lancaster, S. J. Blundell, Z. Guguchia, H. Taniguchi, S. J. Clark, and F. L. Pratt Phys. Rev. Research 5, 013015 (2023) – Published 13 January 2023 | | | Jakub Kocák, Eli Kraisler, and Axel Schild Phys. Rev. Research 5, 013016 (2023) – Published 17 January 2023 | | | Kohei Yoshimura, Artemy Kolchinsky, Andreas Dechant, and Sosuke Ito Phys. Rev. Research 5, 013017 (2023) – Published 17 January 2023 | | | S. L. Harrison, H. Sigurdsson, and P. G. Lagoudakis Phys. Rev. Research 5, 013018 (2023) – Published 17 January 2023 | | | Jun-Jie Wei Phys. Rev. Research 5, 013019 (2023) – Published 17 January 2023 | | | Wenjie Liu, Shi Hu, Li Zhang, Yongguan Ke, and Chaohong Lee Phys. Rev. Research 5, 013020 (2023) – Published 17 January 2023 | | | G. Nalin et al. Phys. Rev. Research 5, 013021 (2023) – Published 17 January 2023 | | | K. M. Taddei, V. O. Garlea, A. M. Samarakoon, L. D. Sanjeewa, J. Xing, T. W. Heitmann, C. dela Cruz, A. S. Sefat, and D. Parker Phys. Rev. Research 5, 013022 (2023) – Published 18 January 2023 | | | Enrico Maria Fenoaltea, Fanyuan Meng, Run-Ran Liu, and Matúš Medo Phys. Rev. Research 5, 013023 (2023) – Published 19 January 2023 | | | K. Nakagawa, S. Tsuchiya, H. Taniguchi, and Y. Toda Phys. Rev. Research 5, 013024 (2023) – Published 19 January 2023 | | | T. Scagliarini, D. Nuzzi, Y. Antonacci, L. Faes, F. E. Rosas, D. Marinazzo, and S. Stramaglia Phys. Rev. Research 5, 013025 (2023) – Published 19 January 2023 | | | Cole Miles, Rhine Samajdar, Sepehr Ebadi, Tout T. Wang, Hannes Pichler, Subir Sachdev, Mikhail D. Lukin, Markus Greiner, Kilian Q. Weinberger, and Eun-Ah Kim Phys. Rev. Research 5, 013026 (2023) – Published 19 January 2023 | | | Steve M. Young, Hartmut Häffner, and Mohan Sarovar Phys. Rev. Research 5, 013027 (2023) – Published 20 January 2023 | | | Nico Sprinkart, Daniel Kazenwadel, Roman Hartmann, and Peter Baum Phys. Rev. Research 5, 013028 (2023) – Published 20 January 2023 | | | Areg Ghazaryan, Alberto Cappellaro, Mikhail Lemeshko, and Artem G. Volosniev Phys. Rev. Research 5, 013029 (2023) – Published 20 January 2023 | | | Han Xie, Yanan Li, Rui Li, Yinchun Leng, Yiming Chen, Lei Wang, Dingjiang Long, Xiang Bian, Chang-Kui Duan, Peiran Yin, Pu Huang, and Jiangfeng Du Phys. Rev. Research 5, 013030 (2023) – Published 23 January 2023 | | | Toshiya Hikihara, Hiroshi Ueda, Kouichi Okunishi, Kenji Harada, and Tomotoshi Nishino Phys. Rev. Research 5, 013031 (2023) – Published 23 January 2023 | | | Anne-Lena Moor and Christoph Zechner Phys. Rev. Research 5, 013032 (2023) – Published 23 January 2023 | | | Tony Jin, João Ferreira, Michel Bauer, Michele Filippone, and Thierry Giamarchi Phys. Rev. Research 5, 013033 (2023) – Published 23 January 2023 | | | Eric Chatterjee, Wei Pan, and Daniel Soh Phys. Rev. Research 5, 013034 (2023) – Published 23 January 2023 | | | Qian Xu, Nam Mannucci, Alireza Seif, Aleksander Kubica, Steven T. Flammia, and Liang Jiang Phys. Rev. Research 5, 013035 (2023) – Published 23 January 2023 | | | Zhichen Pu, Hao Li, Ning Zhang, Hong Jiang, Yiqin Gao, Yunlong Xiao, Qiming Sun, Yong Zhang, and Sihong Shao Phys. Rev. Research 5, 013036 (2023) – Published 24 January 2023 | | | Fumito Mori and Takashi Okada Phys. Rev. Research 5, 013037 (2023) – Published 24 January 2023 | | | Rosa López, Jong Soo Lim, and Kun Woo Kim Phys. Rev. Research 5, 013038 (2023) – Published 24 January 2023 | | | Liu Ziyin and Masahito Ueda Phys. Rev. Research 5, 013039 (2023) – Published 24 January 2023 | | | Q. Faure, C. D. Dashwood, C. V. Colin, R. D. Johnson, E. Ressouche, G. B. G. Stenning, J. Spratt, D. F. McMorrow, and R. S. Perry Phys. Rev. Research 5, 013040 (2023) – Published 24 January 2023 | | | Alexander Nico-Katz and Sougato Bose Phys. Rev. Research 5, 013041 (2023) – Published 24 January 2023 | | | Rebekka Garreis, Jonas Daniel Gerber, Veronika Stará, Chuyao Tong, Carolin Gold, Marc Röösli, Kenji Watanabe, Takashi Taniguchi, Klaus Ensslin, Thomas Ihn, and Annika Kurzmann Phys. Rev. Research 5, 013042 (2023) – Published 24 January 2023 | | | Simon Hofsäss, J. Eduardo Padilla-Castillo, Sid C. Wright, Sebastian Kray, Russell Thomas, Boris G. Sartakov, Ben Ohayon, Gerard Meijer, and Stefan Truppe Phys. Rev. Research 5, 013043 (2023) – Published 25 January 2023 | | | Xie-Hang Yu, Zongping Gong, and J. Ignacio Cirac Phys. Rev. Research 5, 013044 (2023) – Published 25 January 2023 | | | Chenyuan Li, Subir Sachdev, and Darshan G. Joshi Phys. Rev. Research 5, 013045 (2023) – Published 25 January 2023 | | | Ilya Golokolenov, Arpit Ranadive, Luca Planat, Martina Esposito, Nicolas Roch, Xin Zhou, Andrew Fefferman, and Eddy Collin Phys. Rev. Research 5, 013046 (2023) – Published 25 January 2023 | | | Editors' Suggestion K. N. Komagata, V. J. Wittwer, T. Südmeyer, L. Emmenegger, and M. Gianella Phys. Rev. Research 5, 013047 (2023) – Published 26 January 2023 | A scheme to calibrate a frequency-swept frequency comb against a reference laser is developed. Its application to a dual-comb spectrometer based on midinfrared quantum cascade lasers results in molecular spectra with high-frequency accuracy at fast refresh rates. | | | | | | Nicolas Velasquez, Oksana Travnikova, Renaud Guillemin, Iyas Ismail, Loïc Journel, Jessica B. Martins, Dimitris Koulentianos, Denis Céolin, Laure Fillaud, Maria Luiza M. Rocco, Ralph Püttner, Maria Novella Piancastelli, Marc Simon, Sergei Sheinerman, Leonid Gerchikov, and Tatiana Marchenko Phys. Rev. Research 5, 013048 (2023) – Published 26 January 2023 | | | Timothy J. Callow, Eli Kraisler, and Attila Cangi Phys. Rev. Research 5, 013049 (2023) – Published 26 January 2023 | | | Xianzhang Chen, Zhen-Qi Chen, Liang Huang, Celso Grebogi, and Ying-Cheng Lai Phys. Rev. Research 5, 013050 (2023) – Published 26 January 2023 | | | Nicholas St. Clair, Dominique Davenport, Arnold D. Kim, and Dustin Kleckner Phys. Rev. Research 5, 013051 (2023) – Published 26 January 2023 | | | Harshitra Mahalingam, Zhun Wai Yap, B. A. Olsen, and A. Rodin Phys. Rev. Research 5, 013053 (2023) – Published 27 January 2023 | | | Hsin-Mei Ho, Shih-Chuan Lien, and Yu-Hui Tang Phys. Rev. Research 5, 013054 (2023) – Published 27 January 2023 | | | Andreas Hans et al. Phys. Rev. Research 5, 013055 (2023) – Published 30 January 2023 | | | Christoph Hotter, Laurin Ostermann, and Helmut Ritsch Phys. Rev. Research 5, 013056 (2023) – Published 30 January 2023 | | | Adrian E. Rubio López, Ashwin K. Boddeti, Fanglin Bao, Hyunsoo Choi, and Zubin Jacob Phys. Rev. Research 5, 013057 (2023) – Published 30 January 2023 | | | M. Stekiel, P. Čermák, C. Franz, W. Simeth, S. Weber, E. Ressouche, W. Schmidt, K. Nemkovski, H. Deng, A. Bauer, C. Pfleiderer, and A. Schneidewind Phys. Rev. Research 5, 013058 (2023) – Published 30 January 2023 | | | Bao-Jie Liu, L.-L. Yan, Y. Zhang, M.-H. Yung, Shi-Lei Su, and C. X. Shan Phys. Rev. Research 5, 013059 (2023) – Published 30 January 2023 | | | Weiyuan Gong, Si Jiang, and Dong-Ling Deng Phys. Rev. Research 5, 013060 (2023) – Published 30 January 2023 | | | Sergio A. Ortega and Miguel A. Martin-Delgado Phys. Rev. Research 5, 013061 (2023) – Published 31 January 2023 | | | Yasunobu Arikawa, Alessio Morace, Yuki Abe, Natsumi Iwata, Yasuhiko Sentoku, Akifumi Yogo, Kazuki Matsuo, Mitsuo Nakai, Hideo Nagatomo, Kunioki Mima, Hiroaki Nishimura, Shinsuke Fujioka, Ryosuke Kodama, Shunsuke Inoue, Masaki Hashida, Shuji Sakabe, Diego De Luis, Giancarlo Gatti, Marine Huault, José Antonio Pérez-Hernández, Luis Roso, and Luca Volpe Phys. Rev. Research 5, 013062 (2023) – Published 31 January 2023 | | | F. Irshad, S. Karsch, and A. Döpp Phys. Rev. Research 5, 013063 (2023) – Published 31 January 2023 | | | Juraj Szavits-Nossan and Ramon Grima Phys. Rev. Research 5, 013064 (2023) – Published 31 January 2023 | | | Bujiao Wu, Xiaoyu He, Shuai Yang, Lifu Shou, Guojing Tian, Jialin Zhang, and Xiaoming Sun Phys. Rev. Research 5, 013065 (2023) – Published 31 January 2023 | | | Andreas Bock Michelsen, Patrik Recher, Bernd Braunecker, and Thomas L. Schmidt Phys. Rev. Research 5, 013066 (2023) – Published 31 January 2023 | | | Kiyoshi Kanazawa and Didier Sornette Phys. Rev. Research 5, 013067 (2023) – Published 31 January 2023 | | | M. M. Piva, J. C. Souza, V. Brousseau-Couture, Sopheak Sorn, K. R. Pakuszewski, Janas K. John, C. Adriano, M. Côté, P. G. Pagliuso, Arun Paramekanti, and M. Nicklas Phys. Rev. Research 5, 013068 (2023) – Published 31 January 2023 | | | Carlos Naya, Tommaso Bertolini, and Johan Carlström Phys. Rev. Research 5, 013069 (2023) – Published 31 January 2023 | | | T. W. Penny, A. Pontin, and P. F. Barker Phys. Rev. Research 5, 013070 (2023) – Published 31 January 2023 | | | Shujie Cheng and Gao Xianlong Phys. Rev. Research 5, 019001 (2023) – Published 3 January 2023 | | | | |
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