论文标题

浆果的阶段和手性异常

Berry's phase and chiral anomalies

论文作者

Fujikawa, Kazuo, Umetsu, Koichiro

论文摘要

提出了浆果阶段和手性异常的基本材料,以欣赏与这些概念相关的现象。 至于贝瑞的阶段,使用拉格朗日式和哈密顿形式主义进行了对该主题的一般调查。 在应用于异常大厅效应的情况下,Born-Oppenheimer近似的典范的汉密尔顿形式主义可以结合Berry连接的量规对称性,但无法同时融合电磁载体的电位。 Born-oppenheimer近似转变为拉格朗日形式主义,并以时间衍生的术语允许,可以与Berry的连接同时合并电磁矢量电位,但一致的规范性质丢失了,因此变得古典。因此,拉格朗日形式主义可以同时纳入对称的量规,但会破坏基本的量子对称性,从而导致经典的异常泊松托架和经典的nernst效果,如常规形式主义。 至于手性异常,我们通过路径积分配方呈现基本材料,重点是晶格上的费米子。晶格上由$γ_{5} $定义的手性费米恩不包含用于非变化晶格间距$ a \ neq0 $的手性异常。 晶格上的光谱流的概念并不会导致每个物种分别倍增,而是从一般意义上产生一对生产。我们还提到,一种名为Ginsparg-Wilson Fermion的特定结构实际上可能是有用的。我们讨论了Berry的相位和手性异常在核物理和相关领域的代表性应用,以说明使用这两个基本概念的使用。

The basic materials of Berry's phase and chiral anomalies are presented to appreciate the phenomena related to those notions. As for Berry's phase, a general survey of the subject is presented using both Lagrangian and Hamiltonian formalisms. The canonical Hamiltonian formalism of the Born-Oppenheimer approximation, when applied to the anomalous Hall effect, can incorporate the gauge symmetry of Berry's connection but unable to incorporate the electromagnetic vector potential simultaneously. Transformed to the Lagrangian formalism with a time-derivative term allowed, the Born-Oppenheimer approximation can incorporate the electromagnetic vector potential simultaneously with Berry's connection, but the consistent canonical property is lost and thus becomes classical. The Lagrangian formalism can thus incorporate both gauge symmetries simultaneously but spoils the basic quantum symmetries, and thus results in classical anomalous Poisson brackets and the classical Nernst effect as in the conventional formalism. As for chiral anomalies, we present basic materials by the path integral formulation with an emphasis on fermions on the lattice. A chiral fermion defined by $γ_{5}$ on the lattice does not contain the chiral anomaly for the non-vanishing lattice spacing $a\neq0$. The idea of a spectral flow on the lattice does not lead to an anomaly for each species doubler separately but rather to a pair production in a general sense. We also mention that a specific construction called the Ginsparg-Wilson fermion, which is free of species doublers, may practically be useful. We discuss the representative applications of Berry's phase and chiral anomalies in nuclear physics and related fields to illustrate the use of these two basic notions.

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