Volume 106, Issue 5 November 2022 | | Advertisement APS is pleased to announce the launch of the newest Physical Review title, PRX Life, a high impact, fully open access journal dedicated to publishing outstanding research at all scales of biological organization. As the first interdisciplinary journal focused exclusively on quantitative biological research, PRX Life aims to catalyze discoveries that advance our understanding of living systems by publishing research articles, perspectives, reviews, and tutorials by and for scientists working at the interface of physics and biology. Learn more and sign up for alerts » | | | | | Advertisement Abstract submissions are open for the APS April Meeting 2023: Quarks to Cosmos! Share your groundbreaking research in astrophysics, particle physics, nuclear physics, and gravitation with those in academia, industry, and national labs. Remember, you must be an APS member to submit. Learn more about the abstract submission process » | | | | | Not an APS member? Join today to start connecting with a community of more than 50,000 physicists. | | | | Editors' Suggestion Yuuka Kanakubo, Yasuki Tachibana, and Tetsufumi Hirano Phys. Rev. C 106, 054908 (2022) – Published 18 November 2022 | The theoretical interpretation of data produced in relativistic heavy-ion collisions has relied on applying relativistic viscous fluid-dynamical modeling approaches. Recently, the focus of several studies has been on the transition between the very first instants of the collision and the hydrodynamic phase. This paper shows that the addition of a corona component to a fluid-dynamical core increases the agreement between theory and low-momentum data. This supports the importance of non-equilibrium physics in the characterization of the quark-gluon plasma. | | | | | | Editors' Suggestion Letter K. Godbey, A. S. Umar, and C. Simenel Phys. Rev. C 106, L051602 (2022) – Published 18 November 2022 | Many aspects of physics that spans from the origin of the elements to nuclear technologies rely on a robust description of nuclear reactions. One therefore needs predictive modelling of nuclear quantum many-body dynamics in which the uncertainties are well-understood. The authors use the time-dependent Hartree-Fock approach, and apply uncertainty quantification to the nuclear dynamics, considering a collection of low-energy heavy-ion fusion reactions. They find that the uncertainty in the theoretical results mainly arises from structure properties, such as the skin of neutron-rich nuclei, which are particularly ill-constrained. This work highlights the importance of including reaction data in the construction and constraint of new theoretical models that can treat dynamics and structure on the same footing. | | | | | | Letter M. Wang et al. Phys. Rev. C 106, L051301 (2022) – Published 1 November 2022 | | | Letter Nguyen Le Anh, Bui Minh Loc, Naftali Auerbach, and Vladimir Zelevinsky Phys. Rev. C 106, L051302 (2022) – Published 18 November 2022 | | | Letter Ying Zhang, Yuxuan Bao, Hong Shen, and Jinniu Hu Phys. Rev. C 106, L051303 (2022) – Published 18 November 2022 | | | Letter N. Gavrielov, A. Leviatan, and F. Iachello Phys. Rev. C 106, L051304 (2022) – Published 21 November 2022 | | | Letter Jørgen Randrup Phys. Rev. C 106, L051601 (2022) – Published 17 November 2022 | | | Editors' Suggestion Letter K. Godbey, A. S. Umar, and C. Simenel Phys. Rev. C 106, L051602 (2022) – Published 18 November 2022 | Many aspects of physics that spans from the origin of the elements to nuclear technologies rely on a robust description of nuclear reactions. One therefore needs predictive modelling of nuclear quantum many-body dynamics in which the uncertainties are well-understood. The authors use the time-dependent Hartree-Fock approach, and apply uncertainty quantification to the nuclear dynamics, considering a collection of low-energy heavy-ion fusion reactions. They find that the uncertainty in the theoretical results mainly arises from structure properties, such as the skin of neutron-rich nuclei, which are particularly ill-constrained. This work highlights the importance of including reaction data in the construction and constraint of new theoretical models that can treat dynamics and structure on the same footing. | | | | | | Letter Yuan-Sheng Zhao, Lingxiao Wang, Kai Zhou, and Xu-Guang Huang Phys. Rev. C 106, L051901 (2022) – Published 3 November 2022 | | | Letter Matteo Buzzegoli, Dmitri E. Kharzeev, Yu-Chen Liu, Shuzhe Shi, Sergei A. Voloshin, and Ho-Ung Yee Phys. Rev. C 106, L051902 (2022) – Published 18 November 2022 | | | Letter Dmitri E. Kharzeev, Jinfeng Liao, and Shuzhe Shi Phys. Rev. C 106, L051903 (2022) – Published 28 November 2022 | | | Nucleon-Nucleon Interaction, Few-Body Systems | D. Gazda, T. Yadanar Htun, and C. Forssén Phys. Rev. C 106, 054001 (2022) – Published 4 November 2022 | | | A. Watanabe et al. Phys. Rev. C 106, 054002 (2022) – Published 21 November 2022 | | | J. M. Alarcón and J. A. Oller Phys. Rev. C 106, 054003 (2022) – Published 28 November 2022 | | | M. Kohno, H. Kamada, and K. Miyagawa Phys. Rev. C 106, 054004 (2022) – Published 28 November 2022 | | | Jaime Martínez-Larraz and Tomás R. Rodríguez Phys. Rev. C 106, 054301 (2022) – Published 1 November 2022 | | | M. Horoi, A. Neacsu, and S. Stoica Phys. Rev. C 106, 054302 (2022) – Published 2 November 2022 | | | L. V. Skripnikov and S. D. Prosnyak Phys. Rev. C 106, 054303 (2022) – Published 2 November 2022 | | | P. Alexa, M. Abolghasem, G. Thiamova, D. Bonatsos, T. R. Rodríguez, and P.-G. Reinhard Phys. Rev. C 106, 054304 (2022) – Published 2 November 2022 | | | M. Spieker, L. A. Riley, P. D. Cottle, K. W. Kemper, D. Bazin, S. Biswas, P. J. Farris, A. Gade, T. Ginter, S. Giraud, J. Li, S. Noji, J. Pereira, M. Smith, D. Weisshaar, and R. G. T. Zegers Phys. Rev. C 106, 054305 (2022) – Published 2 November 2022 | | | A. S. Mare and A. Petrovici Phys. Rev. C 106, 054306 (2022) – Published 3 November 2022 | | | P. C. Sood and R. Gowrishankar Phys. Rev. C 106, 054307 (2022) – Published 4 November 2022 | | | M. J. Burns, R. Chapman, K. M. Spohr, J. Ollier, M. Labiche, X. Liang, Y. Sun, Yan-Xin Liu, E. Farnea, M. Axiotis, T. Martinez, D. R. Napoli, C. Ur, and Th. Kröll Phys. Rev. C 106, 054308 (2022) – Published 7 November 2022 | | | Esra Yüksel, Florian Mercier, Jean-Paul Ebran, and Elias Khan Phys. Rev. C 106, 054309 (2022) – Published 8 November 2022 | | | M. Barbui, A. Volya, E. Aboud, S. Ahn, J. Bishop, V. Z. Goldberg, J. Hooker, C. H. Hunt, H. Jayatissa, Tz. Kokalova, E. Koshchiy, S. Pirrie, E. Pollacco, B. T. Roeder, A. Saastamoinen, S. Upadhyayula, C. Wheldon, and G. V. Rogachev Phys. Rev. C 106, 054310 (2022) – Published 8 November 2022 | | | Shi Yuan Ding (丁士缘), Zhuang Qian (钱庄), Bao Yuan Sun (孙保元), and Wen Hui Long (龙文辉) Phys. Rev. C 106, 054311 (2022) – Published 10 November 2022 | | | Yoshiko Kanada-En'yo and Nobuo Hinohara Phys. Rev. C 106, 054312 (2022) – Published 10 November 2022 | | | Qing Zhao, Masaaki Kimura, Bo Zhou, and Seung-heon Shin Phys. Rev. C 106, 054313 (2022) – Published 14 November 2022 | | | J. Yang, J. Dudek, I. Dedes, A. Baran, D. Curien, A. Gaamouci, A. Góźdź, A. Pędrak, D. Rouvel, and H. L. Wang Phys. Rev. C 106, 054314 (2022) – Published 14 November 2022 | | | V. W. Ingeberg, P. Jones, L. Msebi, S. Siem, M. Wiedeking, A. A. Avaa, M. V. Chisapi, E. A. Lawrie, K. L. Malatji, L. Makhathini, S. P. Noncolela, and O. Shirinda Phys. Rev. C 106, 054315 (2022) – Published 14 November 2022 | | | H. K. Wang, G. X. Li, B. Jiang, and Y. B. Qian Phys. Rev. C 106, 054316 (2022) – Published 14 November 2022 | | | K. Abe and H. Nakada Phys. Rev. C 106, 054317 (2022) – Published 14 November 2022 | | | J. Y. Fang (方基宇), J. Chen (陈静), and Z. M. Niu (牛中明) Phys. Rev. C 106, 054318 (2022) – Published 16 November 2022 | | | Ronen Weiss, Alessandro Lovato, and R. B. Wiringa Phys. Rev. C 106, 054319 (2022) – Published 16 November 2022 | | | Bin-Lei Wang, Fan Gao, Long-Jun Wang, and Yang Sun Phys. Rev. C 106, 054320 (2022) – Published 16 November 2022 | | | P. Proust, Y. Lallouet, D. Davesne, and J. Meyer Phys. Rev. C 106, 054321 (2022) – Published 16 November 2022 | | | Edgard Bonilla, Pablo Giuliani, Kyle Godbey, and Dean Lee Phys. Rev. C 106, 054322 (2022) – Published 17 November 2022 | | | J. Schmitt, G. B. King, R. G. T. Zegers, Y. Ayyad, D. Bazin, B. A. Brown, A. Carls, J. Chen, A. Davis, M. DeNudt, J. Droste, B. Gao, C. Hultquist, H. Iwasaki, S. Noji, S. Pastore, J. Pereira, M. Piarulli, H. Sakai, A. Stolz, R. Titus, R. B. Wiringa, and J. C. Zamora Phys. Rev. C 106, 054323 (2022) – Published 23 November 2022 | | | Tongqi Liang, Zhongzhou Ren, Dong Bai, and Jian Liu Phys. Rev. C 106, 054324 (2022) – Published 28 November 2022 | | | O. Kaleja et al. Phys. Rev. C 106, 054325 (2022) – Published 29 November 2022 | | | Yi-Heng Wu, Jing-Bin Lu, Zhen Ren, Tian-Jiao Gao, Pei-Yao Yang, Yan Hao, Guan-Jian Fu, Jian Li, Ke-Yan Ma, Xiao-Guang Wu, Yun Zheng, and Cong-Bo Li Phys. Rev. C 106, 054326 (2022) – Published 30 November 2022 | | | Peng-Hui Chen, Chang Geng, Xiang-Hua Zeng, and Zhao-Qing Feng Phys. Rev. C 106, 054601 (2022) – Published 2 November 2022 | | | U. Umbelino, R. Lichtenthäler, O. C. B. Santos, K. C. C. Pires, A. S. Serra, V. Scarduelli, A. L. de Lara, E. O. N. Zevallos, J. C. Zamora, A. Lépine-Szily, J. M. B. Shorto, M. Assunção, and V. A. B. Zagatto Phys. Rev. C 106, 054602 (2022) – Published 2 November 2022 | | | Fang Zhang and Gao-Chan Yong Phys. Rev. C 106, 054603 (2022) – Published 14 November 2022 | | | K. P. Santhosh Phys. Rev. C 106, 054604 (2022) – Published 15 November 2022 | | | Jian Liu, Yunsheng Wang, Yonghao Gao, Pawel Danielewicz, Chang Xu, and Zhongzhou Ren Phys. Rev. C 106, 054605 (2022) – Published 15 November 2022 | | | Yingge Huang (黄英格), Yujie Feng (冯玉洁), Erxi Xiao (肖尔熙), Xin Lei (雷昕), Long Zhu (祝龙), and Jun Su (苏军) Phys. Rev. C 106, 054606 (2022) – Published 16 November 2022 | | | M. Hemalatha Phys. Rev. C 106, 054607 (2022) – Published 17 November 2022 | | | Weijie Du, Soham Pal, Mamoon Sharaf, Peng Yin, Shiplu Sarker, Andrey M. Shirokov, and James P. Vary Phys. Rev. C 106, 054608 (2022) – Published 21 November 2022 | | | Jie Zhao (赵杰), Tamara Nikšić, and Dario Vretenar Phys. Rev. C 106, 054609 (2022) – Published 23 November 2022 | | | Jie Liu, Haoyu jiang, Zengqi Cui, Yiwei Hu, Haofan Bai, Jinxiang Chen, Guohui Zhang, Yu. M. Gledenov, E. Sansarbayar, G. Khuukhenkhuu, N. Battsooj, L. Krupa, I. Chuprakov, Xichao Ruan, Hanxiong Huang, Jie Ren, and Qiwen Fan Phys. Rev. C 106, 054610 (2022) – Published 28 November 2022 | | | R. S. Mackintosh and N. Keeley Phys. Rev. C 106, 054611 (2022) – Published 28 November 2022 | | | S. Appannababu, V. V. Parkar, V. Jha, and S. Kailas Phys. Rev. C 106, 054612 (2022) – Published 28 November 2022 | | | H. M. Maridi, K. Rusek, and N. Keeley Phys. Rev. C 106, 054613 (2022) – Published 28 November 2022 | | | Guillaume Scamps Phys. Rev. C 106, 054614 (2022) – Published 30 November 2022 | | | T. A. Werke, C. S. Salas, K. J. Glennon, D. A. Mayorov, E. E. Tereshatov, M. F. Volia, D. M. Wright, and C. M. Folden, III Phys. Rev. C 106, 054615 (2022) – Published 30 November 2022 | | | Relativistic Nuclear Collisions | Yi-Hao Pan, Wen-Hao Shi, Xiao-Ming Xu, and H. J. Weber Phys. Rev. C 106, 054901 (2022) – Published 3 November 2022 | | | Nikhil Hatwar and M. Mishra Phys. Rev. C 106, 054902 (2022) – Published 9 November 2022 | | | Aritra De, Chun Shen, and Joseph I. Kapusta Phys. Rev. C 106, 054903 (2022) – Published 9 November 2022 | | | Niklas Götz and Hannah Elfner Phys. Rev. C 106, 054904 (2022) – Published 10 November 2022 | | | Jin Wu, Zhiming Li, Xiaofeng Luo, Mingmei Xu, and Yuanfang Wu Phys. Rev. C 106, 054905 (2022) – Published 16 November 2022 | | | A. De, J. I. Kapusta, M. Singh, and T. Welle Phys. Rev. C 106, 054906 (2022) – Published 17 November 2022 | | | Ashik Ikbal Sheikh Phys. Rev. C 106, 054907 (2022) – Published 17 November 2022 | | | Editors' Suggestion Yuuka Kanakubo, Yasuki Tachibana, and Tetsufumi Hirano Phys. Rev. C 106, 054908 (2022) – Published 18 November 2022 | The theoretical interpretation of data produced in relativistic heavy-ion collisions has relied on applying relativistic viscous fluid-dynamical modeling approaches. Recently, the focus of several studies has been on the transition between the very first instants of the collision and the hydrodynamic phase. This paper shows that the addition of a corona component to a fluid-dynamical core increases the agreement between theory and low-momentum data. This supports the importance of non-equilibrium physics in the characterization of the quark-gluon plasma. | | | | | | Wen-Bo Dong, Yi-Liang Yin, and Qun Wang Phys. Rev. C 106, 054909 (2022) – Published 28 November 2022 | | | Chao Zhang and Zi-Wei Lin Phys. Rev. C 106, 054910 (2022) – Published 30 November 2022 | | | Shuai Y. F. Liu and Ralf Rapp Phys. Rev. C 106, 055201 (2022) – Published 18 November 2022 | | | Dmitriy N. Kim and Gerald A. Miller Phys. Rev. C 106, 055202 (2022) – Published 30 November 2022 | | | Electroweak Interaction, Symmetries | Tai-Xing Liu (刘太兴), Rui Peng (彭锐), Songlin Lyu (吕松林), and Bingwei Long (龙炳蔚) Phys. Rev. C 106, 055501 (2022) – Published 28 November 2022 | | | Kauan D. Marquez, Débora P. Menezes, Helena Pais, and Constança Providência Phys. Rev. C 106, 055801 (2022) – Published 1 November 2022 | | | Christian Iliadis, Vimal Palanivelrajan, and Rafael S. de Souza Phys. Rev. C 106, 055802 (2022) – Published 7 November 2022 | | | L. Y. Zhang et al. Phys. Rev. C 106, 055803 (2022) – Published 14 November 2022 | | | M. G. Alford, L. Brodie, A. Haber, and I. Tews Phys. Rev. C 106, 055804 (2022) – Published 15 November 2022 | | | Ilona Bednarek, Wiesław Olchawa, Jan Sładkowski, and Jacek Syska Phys. Rev. C 106, 055805 (2022) – Published 17 November 2022 | | | N. K. Patra, B. K. Sharma, A. Reghunath, A. K. H. Das, and T. K. Jha Phys. Rev. C 106, 055806 (2022) – Published 17 November 2022 | | | Sangyeong Son, Shung-Ichi Ando, and Yongseok Oh Phys. Rev. C 106, 055807 (2022) – Published 18 November 2022 | | | R. J. deBoer, A. Gula, M. Febbraro, K. Brandenburg, C. R. Brune, J. Görres, Gy. Gyürky, R. Kelmar, K. Manukyan, Z. Meisel, D. Odell, M. T. Pigni, Shahina, E. Stech, W. Tan, and M. Wiescher Phys. Rev. C 106, 055808 (2022) – Published 21 November 2022 | | | J. K. Hwang, E. H. Wang, A. V. Ramayya, J. H. Hamilton, Y. X. Luo, J. O. Rasmussen, C. J. Beyer, P. M. Gore, S. C. Wu, I. Y. Lee, C. M. Folden, P. Fallon, P. Zielinski, K. E. Gregorich, M. A. Stoyer, T. N. Ginter, S. J. Zhu, J. D. Cole, and R. Donangelo Phys. Rev. C 106, 059901 (2022) – Published 29 November 2022 | | | Y. J. Chen, E. H. Wang, S. J. Zhu, J. H. Hamilton, A. V. Ramayya, J. K. Hwang, M. Sakhaee, Y. X. Luo, J. O. Rasmussen, K. Li, I. Y. Lee, X. L. Che, H. B. Ding, and M. L. Li Phys. Rev. C 106, 059902 (2022) – Published 29 November 2022 | | | | |
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