论文标题

Gluon冷凝和有效的Gluon质量

Gluon condensates and effective gluon mass

论文作者

Horak, Jan, Ihssen, Friederike, Papavassiliou, Joannis, Pawlowski, Jan M., Weber, Axel, Wetterich, Christof

论文摘要

晶格模拟以及连续QCD的研究表明,非扰动量子波动导致在协变量仪表仪中以有效的质量样行为形式对Gluon繁殖物进行红外正规化。在目前的工作中,我们通过HIGGS机制的动态版本提出了对这种现象的分析理解,从而导致颜色冷凝物的出现。在功能重量级化组方法中,我们计算了协变量恒定场强的有效潜力,其非平凡的最小值与颜色冷凝物有关。在SU(3)量规组的物理情况下,这是八位位凝结物。通过此过程获得的GLUON质量的值与晶格结果和质量间隙相比,质量间隙以及替代动态场景产生的质量间隙。

Lattice simulations along with studies in continuum QCD indicate that non-perturbative quantum fluctuations lead to an infrared regularisation of the gluon propagator in covariant gauges in the form of an effective mass-like behaviour. In the present work we propose an analytic understanding of this phenomenon in terms of gluon condensation through a dynamical version of the Higgs mechanism, leading to the emergence of color condensates. Within the functional renormalisation group approach we compute the effective potential of covariantly constant field strengths, whose non-trivial minimum is related to the color condensates. In the physical case of an SU(3) gauge group this is an octet condensate. The value of the gluon mass obtained through this procedure compares very well to lattice results and the mass gap arising from alternative dynamical scenarios.

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