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核理论

arXiv:2011.03505v1 (nucl-th)
[提交于 2020年11月6日 (此版本) , 最新版本 2021年3月29日 (v2) ]

标题: 剪切粘度和热密QGP的电导率与手征相变

标题: Shear viscosity and electric conductivity of a hot and dense QGP with a chiral phase transition

Authors:Olga Soloveva, David Fuseau, Jörg Aichelin, Elena Bratkovskaya
摘要: We calculate two transport coefficients -- the shear viscosity over entropy ratio $\eta/s$ and the ratio of the electric conductivity to the temperature $\sigma_0/T$ -- of strongly interacting quark matter within the extended $N_f=3$ Polyakov Nambu-Jona-Lasinio (PNJL) model along the crossover transition line for moderate values of baryon chemical potential $0 \leq \mu_B \leq 0.9$ GeV as well as in the vicinity of the critical endpoint (CEP) and at large baryon chemical potential $\mu_B=1.2$ GeV, where the first-order phase transition takes place. The evaluation of the transport coefficients is performed on the basis of the effective Boltzmann equation in the relaxation time approximation. We employ two different methods for the calculation of the quark relaxation times: i) using the averaged transition rate defined via thermal averaged quark-quark and quark-antiquark PNJL cross sections and ii) using the 'weighted' thermal averaged quark-quark and quark-antiquark PNJL cross sections. The $\eta/s$ and $\sigma_0/T$ transport coefficients have a similar temperature and chemical potential behavior when approaching the chiral phase transition for the both methods for the quark relaxation time, however, the differences grow with increasing temperature. We demonstrate the effect of the first-order phase transition and of the CEP on the transport coefficients in the deconfined QCD medium.
摘要: We calculate two transport coefficients -- the shear viscosity over entropy ratio $\eta/s$ and the ratio of the electric conductivity to the temperature $\sigma_0/T$ -- of strongly interacting quark matter within the extended $N_f=3$ Polyakov Nambu-Jona-Lasinio (PNJL) model along the crossover transition line for moderate values of baryon chemical potential $0 \leq \mu_B \leq 0.9$ GeV as well as in the vicinity of the critical endpoint (CEP) and at large baryon chemical potential $\mu_B=1.2$ GeV, where the first-order phase transition takes place. The evaluation of the transport coefficients is performed on the basis of the effective Boltzmann equation in the relaxation time approximation. We employ two different methods for the calculation of the quark relaxation times: i) using the averaged transition rate defined via thermal averaged quark-quark and quark-antiquark PNJL cross sections and ii) using the 'weighted' thermal averaged quark-quark and quark-antiquark PNJL cross sections. The $\eta/s$ and $\sigma_0/T$ transport coefficients have a similar temperature and chemical potential behavior when approaching the chiral phase transition for the both methods for the quark relaxation time, however, the differences grow with increasing temperature. We demonstrate the effect of the first-order phase transition and of the CEP on the transport coefficients in the deconfined QCD medium.
评论: 16页,21图,4表
主题: 核理论 (nucl-th) ; 高能物理 - 现象学 (hep-ph)
引用方式: arXiv:2011.03505 [nucl-th]
  (或者 arXiv:2011.03505v1 [nucl-th] 对于此版本)
  https://doi.org/10.48550/arXiv.2011.03505
通过 DataCite 发表的 arXiv DOI

提交历史

来自: Olga Soloveva [查看电子邮件]
[v1] 星期五, 2020 年 11 月 6 日 18:25:40 UTC (2,812 KB)
[v2] 星期一, 2021 年 3 月 29 日 10:23:58 UTC (2,315 KB)
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