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Infrared saturation and phases of gauge theories with BRST symmetry

机译:具有BRST对称性的规范理论的红外饱和度和相位

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摘要

We investigate the infrared limit of the quantum equation of motion of the gauge boson propagator in various gauges and models with a BRST symmetry. We find that the saturation of this equation at low momenta distinguishes between the Coulomb, Higgs and confining phase of the gauge theory. The Coulomb phase is characterized by a massless gauge boson. Physical states contribute to the saturation of the transverse equation of motion of the gauge boson at low momenta in the Higgs phase, while the saturation is entirely due to unphysical degrees of freedom in the confining phase. This corollary to the Kugo–Ojima confinement criterion in linear covariant gauges also is sufficient for confinement in general covariant gauges with BRST and anti-BRST symmetry, maximal Abelian gauges with an equivariant BRST symmetry, non-covariant Coulomb gauge and in the Gribov–Zwanziger theory.
机译:我们研究了在具有BRST对称性的各种仪表和模型中,仪表玻色子传播器运动量子方程的红外极限。我们发现,该方程在低矩处的饱和度可将库仑,希格斯和量规理论的约束阶段区分开。库仑相的特征在于无质量规玻色子。在希格斯相位中,物理状态有助于低玻色子的量规玻色子运动方程的饱和,而饱和状态完全是由于约束阶段中非物理的自由度所致。线性协变量规对Kugo–Ojima约束准则的推论也足以约束具有BRST和反BRST对称性的通用协变量规,具有等变BRST对称性的最大阿贝尔规,非协变量库仑规以及Gribov–Zwanziger理论。

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