Author:
Wu Zu-Qing,Ping Jia-Lun,Zong Hong-Shi
Abstract
Abstract
The self-consistent mean field approximation of the two-flavor NJL model, with a free parameter
to reflect the competition between the "direct" channel and the "exchange" channel, is employed to study the QCD phase structure at finite isospin chemical potential
, finite baryon chemical potential
and finite temperature T, and especially to study the location of the QCD critical point. Our results show that in order to match the corresponding lattice results of isospin density and energy density, the contributions of the "exchange" channel need to be considered in the framework of the NJL model, and a weighting factor
should be taken. It is also found that for fixed isospin chemical potentials, the lower temperature of the phase transition is obtained with increasing
in the
plane, and the largest difference of the phase transition temperature with different
's appears at
. At
the temperature of the QCD critical end point (CEP) decreases with increasing
, while the critical baryon chemical potential increases. At high isospin chemical potential (
MeV), the temperature of the QCD tricritical point (TCP) increases with increasing
, and in the low temperature regions the system will transition from the pion superfluidity phase to the normal phase as
increases. At low density, the critical temperature of the QCD phase transition with different
's rapidly increases with
at the beginning, and then increases smoothly around
MeV. In the high baryon density region, the increase of the isospin chemical potential will raise the critical baryon chemical potential of the phase transition.
Funder
National Natural Science Foundation of China
National Major state Basic Research and Development of China
Subject
Astronomy and Astrophysics,Instrumentation,Nuclear and High Energy Physics
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献