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Chiral Symmetry and BRST Symmetry Breaking, Quaternion Reality and the Lattice Simulation

机译:手性对称和BRST对称性破坏,四元数现实和晶格模拟

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We discuss that the deviation of the Kugo-Ojima color confinement parameter u(0) from -1 in the case of quenched lattice simulation and the consistency with -1 in the case of full QCD simulation could be attributed to the boundary condition defined by fermions inside the region of r lfm. By using the domain wall fermion propagator in lattice simulation, we show that the chiral symmetry breaking in the infrared can become manifest when one assumes that the left-handed fermion on the left wall and the right-handed fermion on the right wall are correlated by a self-dual gauge field. The relation between the infrared fixed point of the running coupling measured in lattice simulations, the prediction of the BLM renormalization theory, the conformal field theory with use of the t'Hooft anomaly matching condition in non-SUSY supersymmetric theory and the quaternion real condition are discussed.
机译:我们讨论了在淬火晶格模拟的情况下,在淬火晶格模拟的情况下从-1的偏差和与完整QCD仿真的情况下的-1的一致性可能归因于由费粒定义的边界条件在R LFM的区域内。通过使用晶格模拟中的畴壁码头传播者,我们表明,当一个人认为左侧墙上和右壁上的右手费米偏见的左手码头相关时,在红外线中断裂的手性对称性可以变得显现一个自我双重规格领域。在晶格模拟中测量的运行耦合的红外线固定点之间的关系,在非SUSY超对比理论中使用T'hooft异常匹配条件的保形场理论的预制现场理论及四元数现状讨论。

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