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外尔费米子中的几何、反常、拓扑与输运。

Geometry, anomaly, topology, and transport in Weyl fermions.

作者信息

Ahmad Azaz, K Gautham Varma, Sharma Gargee

机构信息

School of Physical Sciences, Indian Institute of Technology Mandi, Mandi 175005, India.

出版信息

J Phys Condens Matter. 2024 Nov 11;37(4). doi: 10.1088/1361-648X/ad8ab9.

Abstract

Weyl fermions are one of the simplest objects that link ideas in geometry and topology to high-energy physics and condensed matter physics. Although the existence of Weyl fermions as elementary particles remains dubious, there is mounting evidence of their existence as quasiparticles in certain condensed matter systems. Such systems are termed Weyl semimetals (WSMs). Needless to say, WSMs have emerged as a fascinating class of materials with unique electronic properties, offering a rich playground for both fundamental research and potential technological applications. This review examines recent advancements in understanding electron transport in WSMs. We begin with a pedagogical introduction to the geometric and topological concepts critical to understanding quantum transport in Weyl fermions. We then explore chiral anomaly, a defining feature of WSMs, and its impact on transport phenomena such as longitudinal magnetoconductance and planar Hall effect. The Maxwell-Boltzmann transport theory extended beyond the standard relaxation-time approximation is then discussed in the context of Weyl fermions, which is used to evaluate various transport properties. Attention is also given to the effects of strain-induced gauge fields and external magnetic fields in both time-reversal broken and inversion asymmetric inhomogeneous WSMs. The review synthesizes theoretical insights, experimental observations, and numerical simulations to provide a comprehensive understanding of the complex transport behaviors in WSMs, aiming to bridge the gap between theoretical predictions and experimental verification.

摘要

外尔费米子是将几何与拓扑学概念与高能物理和凝聚态物理联系起来的最简单的对象之一。尽管外尔费米子作为基本粒子的存在仍存疑问,但越来越多的证据表明它们在某些凝聚态系统中作为准粒子存在。这类系统被称为外尔半金属(WSMs)。毋庸置疑,外尔半金属已成为一类具有独特电子性质的迷人材料,为基础研究和潜在技术应用提供了丰富的平台。本综述考察了在外尔半金属中理解电子输运方面的最新进展。我们首先从对理解外尔费米子中的量子输运至关重要的几何和拓扑概念进行教学式介绍开始。然后我们探讨手征反常,这是外尔半金属的一个决定性特征,以及它对诸如纵向磁电导和平面霍尔效应等输运现象的影响。接着在与外尔费米子相关的背景下讨论超越标准弛豫时间近似的麦克斯韦 - 玻尔兹曼输运理论,该理论用于评估各种输运性质。还关注了应变诱导规范场和外部磁场在时间反演破缺和空间反演不对称的非均匀外尔半金属中的效应。本综述综合了理论见解、实验观察和数值模拟,以全面理解外尔半金属中复杂的输运行为,旨在弥合理论预测与实验验证之间的差距。

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