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Phase structure of two-color QCD at real and imaginary chemical potentials: Lattice simulations and model analyses

机译:真实和虚构化学电位下双色QCD的相位结构:格子仿真和模型分析

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We investigate the phase structure of two-color QCD at both real and imaginary chemical potentials (mu), performing lattice simulations and analyzing the data with the Polyakov-loop extended Nambu-Jona-Lasinio (PNJL) model. Lattice QCD simulations are done on an 8(3) x 4 lattice with the clover-improved two-flavor Wilson fermion action and the renormalization-group-improved Iwasaki gauge action. We test the analytic continuation of physical quantities from imaginary mu to real mu by comparing lattice QCD results calculated at real mu with the results of an analytic function, the coefficients of which are determined from lattice QCD results at imaginary mu. We also test the validity of the PNJL model by comparing model results with lattice QCD ones. The PNJL model is good in the deconfinement region, but less accurate in the transition and confinement regions. This problem is cured by introducing the baryon degree of freedom to the model. It is also found that the vector-type four-quark interaction is necessary to explain lattice data on the quark number density.
机译:我们在实部和虚化学势(亩)调查双色QCD的相结构,在执行晶格模拟和与波利亚科夫环分析该数据扩展南部-Jona的-Lasinio(PNJL)模型。晶格QCD仿真上进行的8(3)×4格子与三叶草改善两味威尔逊费米子动作和再归一化基团的改进岩崎规动作。我们通过比较在同一个分析函数的结果实亩计算晶格QCD结果测试来自假想亩到真实亩物理量的分析延续,其中的系数是从在假想亩晶格QCD结果确定。我们还通过模型计算结果和格子量子色动力学的人比较测试PNJL模型的有效性。该PNJL模型在禁闭区不错,但在过渡和限制区域不太准确。这个问题可以通过引入自由的重子度模型治愈。还发现的是,矢量型四夸克相互作用是必要的解释上夸克数密度点阵数据。

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