Dense nuclear matter equation of state from heavy-ion collisions

物理 核物理学 核物质 同位旋 强子 核子 不对称 状态方程 核天体物理学 中子 重离子 粒子物理学 离子 量子力学
作者
Agnieszka Sorensen,Kshitij Agarwal,K. W. Brown,Z. Chajęcki,Paweł Danielewicz,C. Drischler,Stefano Gandolfi,Jeremy W. Holt,Matthias Kaminski,Che Ming Ko,Rohit Kumar,Bao‐An Li,W. G. Lynch,A. B. McIntosh,William Newton,Scott Pratt,О. Savchuk,M. Stefaniak,Ingo Tews,M.B. Tsang,R. Vogt,H.H. Wolter,H. Zbroszczyk,Navid Abbasi,J. Aichelin,Anton Andronic,Steffen A. Bass,F. Becattini,D. Blaschke,Marcus Bleicher,Christoph Blume,Elena Bratkovskaya,B. A. Brown,David Brown,A. Camaiani,G. Casini,Katerina Chatziioannou,A. Chbihi,M. Colonna,M. D. Cozma,Verônica Dexheimer,X. Dong,Travis Dore,Lipei Du,J.A. Dueñas,Hannah Elfner,Wojciech Florkowski,Yuki Fujimoto,R. J. Furnstahl,A. Gade,T. Galatyuk,Charles Gale,Frank Jm Geurts,Sašo Grozdanov,K. Hagel,Steven P. Harris,W. C. Haxton,Ulrich Heinz,Michał Heller,O. Hen,H. Hergert,N. Herrmann,Huan Zhong Huang,Xu-Guang Huang,Natsumi Ikeno,Gabriele Inghirami,Jakub Jankowski,Jiangyong Jia,José Cenizo Jiménez,Joseph I. Kapusta,B. Kardan,Iu. Karpenko,D. Keane,Dmitri E. Kharzeev,А. Куглер,A. Le Fèvre,Dean Lee,Hong Liu,M. A. Lisa,W. J. Llope,I. Lombardo,M. Lorenz,T. Marchi,Larry McLerran,U. Mosel,Anton Motornenko,Berndt Müller,P. Napolitani,J. B. Natowitz,W. Nazarewicz,Jorge Noronha,Jacquelyn Noronha-Hostler,G. Odyniec,P. Papakonstantinou,Zuzana Paulínyová,J. Piekarewicz,Robert D. Pisarski,Christopher Plumberg,Madappa Prakash,J. Randrup,Claudia Ratti,Peter B. Rau,Sanjay G. Reddy,Hans-Rudolf Schmidt,P. Russotto,Radosław Ryblewski,Andreas Schäfer,Björn Schenke,Srimoyee Sen,P. Senger,R. Seto,Chun Shen,B.M. Sherrill,Mayank Singh,Vladimir Skokov,Michał Spaliński,Jan Steinheimer,Mikhail Stephanov,J. Stroth,Christian Sturm,Kai-Jia Sun,A. H. Tang,Giorgio Torrieri,W. Trautmann,G. Verde,Volodymyr Vovchenko,Ryoichi Wada,Fuqiang Wang,Gang Wang,K. Werner,N. Xu,Z. Xu,Ho-Ung Yee,S. J. Yennello,Yi Yin
出处
期刊:Progress in Particle and Nuclear Physics [Elsevier BV]
卷期号:134: 104080-104080 被引量:22
标识
DOI:10.1016/j.ppnp.2023.104080
摘要

The nuclear equation of state (EOS) is at the center of numerous theoretical and experimental efforts in nuclear physics. With advances in microscopic theories for nuclear interactions, the availability of experiments probing nuclear matter under conditions not reached before, endeavors to develop sophisticated and reliable transport simulations to interpret these experiments, and the advent of multi-messenger astronomy, the next decade will bring new opportunities for determining the nuclear matter EOS, elucidating its dependence on density, temperature, and isospin asymmetry. Among controlled terrestrial experiments, collisions of heavy nuclei at intermediate beam energies (from a few tens of MeV/nucleon to about 25 GeV/nucleon in the fixed-target frame) probe the widest ranges of baryon density and temperature, enabling studies of nuclear matter from a few tenths to about 5 times the nuclear saturation density and for temperatures from a few to well above a hundred MeV, respectively. Collisions of neutron-rich isotopes further bring the opportunity to probe effects due to the isospin asymmetry. However, capitalizing on the enormous scientific effort aimed at uncovering the dense nuclear matter EOS, both at RHIC and at FRIB as well as at other international facilities, depends on the continued development of state-of-the-art hadronic transport simulations. This white paper highlights the essential role that heavy-ion collision experiments and hadronic transport simulations play in understanding strong interactions in dense nuclear matter, with an emphasis on how these efforts can be used together with microscopic approaches and neutron star studies to uncover the nuclear EOS.
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