论文标题

拓扑材料中的轴轴电动力学

Axion Electrodynamics in Topological Materials

论文作者

Sekine, Akihiko, Nomura, Kentaro

论文摘要

三维拓扑材料特征的有趣特性之一是拓扑磁电现象,该现象是由称为$θ$项的拓扑术语引起的。这种磁电现象通常被称为轴心电动力学,因为$θ$项的形式与描述假设基本粒子,轴和光子之间耦合的作用完全相同。大约四十年前提出了该斧头,以解决量子染色体动力学中所谓的强CP问题,现在被认为是暗物质的候选者。在本教程中,我们概述了三维拓扑材料中轴突电动力学的理论和实验研究。从三维时间不变的拓扑绝缘子中的拓扑磁电效应开始,我们描述了静态和动态轴轴化绝缘子的基本特性,这些绝缘子的实现需要磁有序。我们还讨论了Weyl Semimetals的电磁反应,重点是手性异常。我们将凝结物物质中轴心电动力学的概念扩展到拓扑超导体,其对外部场的响应可以通过类似于$θ$项的重力拓扑术语来描述。

One of the intriguing properties characteristic to three-dimensional topological materials is the topological magnetoelectric phenomena arising from a topological term called the $θ$ term. Such magnetoelectric phenomena are often termed the axion electrodynamics, since the $θ$ term has exactly the same form as the action describing the coupling between a hypothetical elementary particle, axion, and a photon. The axion was proposed about forty years ago to solve the so-called strong CP problem in quantum chromodynamics, and is now considered as a candidate for dark matter. In this tutorial, we overview theoretical and experimental studies on the axion electrodynamics in three-dimensional topological materials. Starting from the topological magnetoelectric effect in three-dimensional time-reversal invariant topological insulators, we describe the basic properties of static and dynamical axion insulators whose realizations require magnetic orderings. We also discuss the electromagnetic responses of Weyl semimetals with a focus on the chiral anomaly. We extend the concept of the axion electrodynamics in condensed matter to topological superconductors, whose responses to external fields can be described by a gravitational topological term analogous to the $θ$ term.

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