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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Dynamical chiral-symmetry breaking at T=0 and T not equal 0 in the Schwinger-Dyson equation with lattice QCD data
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Dynamical chiral-symmetry breaking at T=0 and T not equal 0 in the Schwinger-Dyson equation with lattice QCD data

机译:具有晶格QCD数据的Schwinger-Dyson方程中的动态手性对称性在T = 0且T不等于0时破裂

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摘要

Dynamical chiral-symmetry breaking (DCSB) in QCD is investigated in the Schwinger-Dyson (SD) formalism based on lattice QCD data. From the quenched lattice data for the quark propagator in the Landau gauge, we extract the SD integral kernel function, the product of the quark-gluon vertex and the polarization factor in the gluon propagator, in an Ansatz-independent manner. We find that the SD kernel function exhibits the characteristic behavior of nonperturbative physics, such as infrared vanishing and strong enhancement at the intermediate-energy region around p similar to 0.6 GeV. The infrared and intermediate energy region (0.4 GeV < p < 1.5 GeV) is found to be most relevant for DCSB from analysis on the relation between the SD kernel and the quark mass function. We apply the lattice-QCD-based SD equation to thermal QCD, and calculate the quark mass function at the finite temperature. Spontaneously broken chiral symmetry is found to be restored at high temperature above 110 MeV.
机译:基于晶格QCD数据,在Schwinger-Dyson(SD)形式主义中研究了QCD中的动态手性对称断裂(DCSB)。从朗道规范中夸克传播子的淬灭晶格数据中,我们以Ansatz独立的方式提取SD积分核函数,夸克-胶子顶点与胶子传播器中极化因子的乘积。我们发现,SD核函数表现出非扰动物理学的特征行为,例如红外消失和在p周围的中间能量区域(类似于0.6 GeV)的强烈增强。通过分析SD核与夸克质量函数之间的关系,发现红外和中能区域(0.4 GeV <1.5 GeV)与DCSB最相关。我们将基于点阵QCD的SD方程应用于热QCD,并在有限温度下计算夸克质量函数。发现在高于110 MeV的高温下可恢复自发破坏的手性对称性。

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