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A Model Study of Equation of State of QCD at Finite Chemical Potential and Zero Temperature
Authors:HOU Feng-Yao JIANG Yu SUN Wei-Min ZONG Hong-Shi
Institution:1.Department of Physics, Nanjing University, Nanjing 210093, China ;2.Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing 100080, China ;3.Joint Center for Particle, Nuclear Physics and Cosmology, Nanjing 210093, China
Abstract:In this paper, we give a direct method for calculating the partition function, and hence the equation of state (EOS) of QCD at finite chemical potential and zero temperature. In the EOS derived in this paper the pressure density is the sum of two terms: the first term P(μ)|μ=0 (the pressure density at μ=0) is a μ-independent constant; the second term, which is totally determined by Gμ](p) (the dressed quark propagator at finite μ), contains all the nontrivial μ-dependence. By applying a general result in the rainbow-ladder approximation of the Dyson--Schwinger approach obtained in our previous study Phys. Rev. C 71 (2005) 015205], Gμ](p) is calculated from the meromorphic quark propagator proposed in Phys. Rev. D 67 (2003) 054019]. From this the full analytic expression of the EOS of QCD at finite μ and zero T is obtained (apart from the constant term P(μ)|μ=0, which can in principle be calculated from the CJT effective action). A comparison between our EOS and the cold, perturbative EOS of QCD of Fraga, Pisarski and Schaffner-Bielich is made. It is expected that our EOS can provide a possible new approach for the study of neutron stars.
Keywords:equation of state (EOS)  phase transition  QCD
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