The first- and second-order magneto-optical effects and intrinsically anomalous transport in 2D van der Waals layered magnets CrXY (X = S, Se, Te; Y = Cl, Br, I)
Xiuxian Yang, Ping Yang, Xiaodong Zhou, Wanxiang Feng, Yugui Yao

TL;DR
This study systematically investigates the electronic, magneto-optical, and anomalous transport properties of 2D layered magnets CrXY, revealing their potential for advanced magneto-optical and spintronic applications.
Contribution
It provides the first comprehensive first-principles analysis of magneto-optical effects and anomalous transport in CrXY monolayers and bilayers, highlighting their unique properties.
Findings
CrSBr is an air-stable 2D magnetic semiconductor.
CrTeY monolayers are multi-band metals.
Ferromagnetic states exhibit significant magneto-optical and anomalous Hall effects.
Abstract
Recently, the two-dimensional magnetic semiconductor CrSBr has attracted considerable attention due to its excellent air-stable property and high magnetic critical temperature. Here, we systematically investigate the electronic structure, magnetocrystalline anisotropy energy, first-order magneto-optical effects (Kerr and Faraday effects) and second-order magneto-optical effects (Schafer-Hubert and Voigt effects) as well as intrinsically anomalous transport properties (anomalous Hall, anomalous Nernst, and anomalous thermal Hall effects) of two-dimensional van der Waals layered magnets CrXY (X = S, Se, Te; Y = Cl, Br, I) by using the first-principles calculations. Our results show that monolayer and bilayer CrXY (X = S, Se) are narrow band gap semiconductors, whereas monolayer and bilayer CrTeY are multi-band metals. The magnetic ground states of bilayer CrXY and the easy magnetization…
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Taxonomy
Topics2D Materials and Applications · Heusler alloys: electronic and magnetic properties · Topological Materials and Phenomena
