论文标题
自发的手性对称性在巨大的Landau仪表中破裂:现实的跑步耦合
Spontaneous chiral symmetry breaking in the massive Landau gauge: realistic running coupling
论文作者
论文摘要
我们通过在Landau-gauge curci-Ferrari模型中通过最近提出的近似方案在QCD中的手性对称性的自发破坏,该模型结合了Yang-Mills耦合的膨胀以及颜色反相反的膨胀,而无需在Quark-Gluon耦合中扩展。该扩展允许通过重新归一化组技术对紫外线的尾巴进行一致的处理。在领先顺序时,它导致夸克传播器的彩虹图重新播放,但是,gluon质量和夸克 - 胶状耦合都琐碎了。在以前的工作中,通过使用简单的模型对这些参数进行更现实的运行,我们可以重现手性对称性破坏的已知现象学,包括对夸克质量函数的晶格数据的令人满意的描述。在这里,我们通过将近似方案带到临近领导顺序来摆脱这种模型依赖性。这使我们能够始终如一地包括参数的现实运行,并访问未取消的Gluon和Ghost Expagators首先进行非平凡顺序,我们可以将其与可用的晶格数据进行比较,以对我们的方法进行更严格的测试。特别是,我们针对各种两点函数的结果与晶格数据相比良好,而模型的参数受到强烈限制。
We investigate the spontaneous breaking of chiral symmetry in QCD by means of a recently proposed approximation scheme in the Landau-gauge Curci-Ferrari model, which combines an expansion in the Yang-Mills coupling and in the inverse number of colors, without expanding in the quark-gluon coupling. The expansion allows for a consistent treatment of ultraviolet tails via renormalization group techniques. At leading order, it leads to the resummation of rainbow diagrams for the quark propagator, with, however, a trivial running of both the gluon mass and the quark-gluon coupling. In a previous work, by using a simple model for a more realistic running of these parameters, we could reproduce the known phenomenology of chiral symmetry breaking, including a satisfactory description of the lattice data for the quark mass function. Here, we get rid of this model-dependence by taking our approximation scheme to next-to-leading order. This allows us to consistently include the realistic running of the parameters and to access the unquenched gluon and ghost propagators to first nontrivial order, which we can compare to available lattice data for an even more stringent test of our approach. In particular, our results for the various two-point functions compare well with lattice data while the parameters of the model are strongly constrained.