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Chiral phase transition and equation of state in chiral imbalance
Authors:Qing-Wu Wang  Chao Shi  Hong-Shi Zong
Institution:1. College of Physics, Sichuan University, Chengdu 610064, China2. Department of nuclear science and technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China3. Department of Physics, Nanjing University, Nanjing 210093, China4. Department of Physics, Anhui Normal University, Wuhu, Anhui 241000, China5. Nanjing Institute of Proton Source Technology, Nanjing 210046, China
Abstract:The chiral phase transition and equation of state are studied within a novel self-consistent mean-field approximation of the two-flavor Nambu-Jona-Lasinio model. In this newly developed model, modifications to the chemical μ and chiral chemical \begin{document}$\mu_5$\end{document} potentials are naturally included by introducing vector and axial-vector channels from Fierz-transformed Lagrangian to the standard Lagrangian. In the proper-time scheme, the chiral phase transition is a crossover in the \begin{document}$T-\mu$\end{document} plane. However, when \begin{document}$\mu_5$\end{document} is incorporated, our study demonstrates that a first order phase transition may emerge. Furthermore, the chiral imbalance will soften the equation of state of quark matter. The mass-radius relationship and tidal deformability of quark stars are calculated. The maximum mass and radius decrease as \begin{document}$\mu_5$\end{document} increases. Our study also indicates that the vector and axial-vector channels exhibit an opposite influence on the equation of state.
Keywords:chiral imbalance  critical end point  tidal deformability
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