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Three-loop hard-thermal-loop perturbation theory thermodynamics at finite temperature and finite baryonic and isospin chemical potential

机译:有限温度和有限辐射和索坦化学电位的三环硬热回路扰动理论热力学

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摘要

In a previous paper [N. Haque et al., J. High Energy Phys. 05 (2014) 27], we calculated the three-loop thermodynamic potential of QCD at finite temperature T and quark chemical potentials mu(q) using the hard-thermal-loop perturbation theory (HTLpt) reorganization of finite temperature and density QCD. The result allows us to study the thermodynamics of QCD at finite temperature and finite baryon, strangeness, and isospin chemical potentials mu(B), mu(S), and mu(I). We calculate the pressure at nonzero mu(B) and mu(I) with mu(S) = 0, and the energy density, the entropy density, the trace anomaly, and the speed of sound at nonzero mu(I) with mu(B) = mu(S) = 0. The second- and fourth-order isospin susceptibilities are calculated at mu(B) = mu(S) = mu(I) = 0. Our results can be directly compared to lattice QCD without Taylor expansions around mu(q) = 0 since QCD has no sign problem at mu(B) = mu(S) = 0 and finite isospin chemical potential mu(I).
机译:在先前的论文中[n。 Haque等人。,J.高能量物理。 05(2014)27],我们计算了有限温度T和夸克化学电位MU(Q)的QCD的三环热力学电位,使用了有限温度和密度QCD的硬热回路扰动理论(HTLPT)重组。 结果允许我们在有限温度和有限的胸序,陌生和索坦化学电位mu(b),mu(s)中研究QCD的热力学。 我们用mu(s)= 0,以及用mu(i)的μ(i)的能量密度,熵密度,痕量异常和声音速度(i)用mu(s)= 0,计算非零Mu(b)和mu(i)的压力( b)= mu(s)= 0.在mu(b)= mu(s)= mu(i)= 0时计算第二和第四阶的异旋孔敏感性。我们的结果可以直接与没有泰勒的晶格qcd相比 MU(Q)= 0周围的扩展由于QCD在MU(b)= mu(s)= 0和有限的索光学潜在mu(i)。

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