带1伴Dirac味的SU(2)的点阵分析

Zhen Bi, A. Grebe, G. Kanwar, P. Ledwith, D. Murphy, M. Wagman
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引用次数: 7

摘要

最近,具有无质量伴Dirac夸克味的$SU(2)$ Yang-Mills理论作为一种新的临界理论出现了,它可以描述在$3+1$维中AIII类平凡绝缘子和拓扑绝缘子之间的演化。这一理论有几种推测的红外动力学。一种可能性是,该理论经历了自发的手性对称破缺,两个无质量的戈德斯通玻色子(标量双夸克和它的反粒子)在红外中出现。Athenodorou等人先前的晶格研究提出的另一种情况是,当夸克质量消失时,该理论的红外部分是一个强相互作用的共形场理论。最近的理论建议认为,在红外中,由两个夸克和一个反夸克组成的复合费米子随着夸克质量趋于零而变得无质量且不相互作用,而其他部分则与这个低能费米子解耦。这项工作扩展了先前的研究,包括复合费米子,以调查这三种可能的情况中哪一种捕捉到了该理论的红外行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lattice Analysis of SU(2) with 1 Adjoint Dirac Flavor
Recently $SU(2)$ Yang-Mills theory with one massless adjoint Dirac quark flavor emerges as a novel critical theory that can describe the evolution between a trivial insulator and a topological insulator in AIII class in $3+1$ dimensions. There are several classes of conjectured infrared dynamics for this theory. One possibility is that the theory undergoes spontaneous chiral symmetry breaking, with two massless Goldstone bosons (the scalar diquark and its antiparticle) in the infrared. Another scenario, which is suggested by previous lattice studies by Athenodorou et al., is that the IR sector of the theory is a strongly interacting conformal field theory as the quark mass vanishes. The most recent theoretical proposals argue for a case that in the infrared a composite fermion composed of two quarks and an antiquark becomes massless and non-interacting as the quark mass goes to zero, while other sectors are decoupled from this low-energy fermion. This work expands upon previous studies by including the composite fermion to investigate which of these three potential scenarios captures the infrared behavior of this theory.
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