Theoretical investigations on Kerr and Faraday rotations in topological multi-Weyl Semimetals

Author:

Ghosh Supriyo1,Sahoo Ambaresh2,Nandy Snehasish31

Affiliation:

1. University of Virginia

2. University of L'Aquila

3. Los Alamos National Laboratory

Abstract

Motivated by the recent proposal of giant Kerr rotation in WSMs, we investigate the Kerr and Faraday rotations in time-reversal broken multi-Weyl semimetals (mWSMs) in the absence of an external magnetic field. Using the framework of Kubo response theory, we find that both the longitudinal and transverse components of the optical conductivity in mWSMs are modified by the topological charge (nn). Engendered by the optical Hall conductivity, we show in the thin film limit that, while the giant Kerr rotation and corresponding ellipticity are independent of nn, the Faraday rotation and its ellipticity angle scale as nn and n^2n2, respectively. In contrast, the polarization rotation in semi-infinite mWSMs is dominated by the axion field showing nn dependence. In particular, the magnitude of Kerr (Faraday) angle decreases (increases) with increasing nn in Faraday geometry, whereas in Voigt geometry, it depicts different nn-dependencies in different frequency regimes. The obtained results on the behavior of polarization rotations in mWSMs could be used in experiments as a probe to distinguish single, double, and triple WSMs, as well as discriminate the surfaces of mWSMs with and without hosting Fermi arcs.

Funder

Laboratory Directed Research and Development

National Science Foundation

United States Department of Energy

Publisher

Stichting SciPost

Subject

General Physics and Astronomy

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Photogalvanic response in multi-Weyl semimetals;Physical Review Research;2024-01-12

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