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首页> 外文期刊>International Journal of Modern Physics, A. Particles and Fields, Gravitation, Cosmology >A formulation of the Yang-Mills theory as a deformation of a topological field theory based on the background field method and quark confinement problem
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A formulation of the Yang-Mills theory as a deformation of a topological field theory based on the background field method and quark confinement problem

机译:基于背景场方法和夸克约束问题,将Yang-Mills理论表述为拓扑场理论的变形

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摘要

By making use of the background field method, we derive a novel reformulation of the Yang-Mills theory which was proposed recently by the author to derive quark confinement in QCD. This reformulation identifies the Yang-Mills theory with a deformation of a topological quantum field theory. The relevant background is given by the topologically nontrivial field configuration, especially, the topological soliton which can be identified with the magnetic monopole current in four dimensions. We argue that the gauge fixing term becomes dynamical and that the gluon mass generation takes place by a spontaneous breakdown of the hidden supersymmetry caused by the dimensional reduction. We also propose a numerical simulation to confirm the validity of the scheme we have proposed. Finally we point out that the gauge fixing part may have a geometric meaning from the viewpoint of global topology where the magnetic monopole solution represents the critical point of a Morse function in the space of field configurations. [References: 90]
机译:通过使用背景场​​方法,我们推导了杨-米尔斯理论的一种新形式,该理论是作者最近提出的,用于推导QCD中的夸克限制。这种重新形式将杨-米尔斯理论与拓扑量子场论的变形相结合。相关背景是通过拓扑非平凡的场配置给出的,尤其是可以用四个维度的磁单极电流识别的拓扑孤子。我们认为量规固定项是动态的,并且胶子质量的产生是由于尺寸缩减导致的隐藏超对称性的自发破坏而发生的。我们还提出了数值模拟,以确认我们提出的方案的有效性。最后,我们指出,从整体拓扑学的角度来看,量规固定部件可能具有几何意义,其中磁单极子解表示场配置空间中莫尔斯函数的临界点。 [参考:90]

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