论文标题

节点半法:光导率的调查

Nodal Semimetals: A Survey on Optical Conductivity

论文作者

Pronin, A. V., Dressel, M.

论文摘要

在凝结物质的不同拓扑和相关阶段中,节点半法占据了一个特殊的位置 - 这些材料中的电子带拓扑与三维体积有关,而不是与表面状态有关。电子带交叉口(节点)的各种不同的实现导致了许多不同的电子特性,从手性异常到黑孔地平线的固态实现。不同的节点相具有相似的低能带结构和准粒子动力学,这两者都可以通过多种方法实验访问。具有较大的穿透深度和高能量分辨率的光学测量值适合于这样的批量探针。尤其是在其他光谱法通常缺乏所需分辨率的低能量下。在这一贡献中,我们回顾了不同节点半学的最新光导性研究,讨论此类测量的可能局限性,并提供了实验结果,简单的理论模型和基于频段结构的计算之间的比较。

Among different topological and related phases of condensed matter, nodal semimetals occupy a special place - the electronic band topology in these materials is related to three-dimensional bulk, rather than to surface, states. A great variety of different realizations of electronic band crossings (the nodes) leads to a plethora of different electronic properties, ranging from the chiral anomaly to solid-state realizations of a black-hole horizon. The different nodal phases have similar low-energy band structure and quasiparticle dynamics, which both can be accessed experimentally by a number of methods. Optical measurements with their large penetration depth and high energy resolution are ideally suited as such a bulk probe; especially at low energies where other spectroscopic methods often lack the required resolution. In this contribution, we review recent optical-conductivity studies of different nodal semimetals, discuss possible limitations of such measurements, and provide a comparison between the experimental results, simple theoretical models, and band-structure-based calculations.

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