Emerging orthorhombic two-dimensional van der Waals magnets

Fuente: arXiv
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Main Authors: Guo, Xiaoyu, Liu, Wenhao, Lv, Bing, Zhao, Liuyan
Format: Preprint
Published: 2025
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author Guo, Xiaoyu
Liu, Wenhao
Lv, Bing
Zhao, Liuyan
author_facet Guo, Xiaoyu
Liu, Wenhao
Lv, Bing
Zhao, Liuyan
contents Two-dimensional (2D) magnetism realized in van der Waals (vdW) materials has expanded to include a great variety of magnetic phases, over a short decade since its first discovery in 2016-2017. However, most of the investigated vdW magnets so far have highly symmetric crystal fields and isotropic in-plane lattice structures, making their 2D magnetism robust but often classical and expected. In this Perspective, we highlight a family of vdW magnets that have distorted crystal fields with low symmetries and orthorhombic crystal lattices with strong anisotropy, and furthermore, show their prospects for realizing a much richer landscape of magnetic phases and phase transitions. First, we introduce the classification of 2D vdW magnets based on their crystal fields and make a contrast between the orthorhombic vdW magnets of focus here and other popular honeycomb/hexagonal/kagome vdW magnets. We then discuss the material candidates, the emergent properties, and the designed controls for these orthorhombic 2D vdW magnets, using the representative CrSBr as an example and extending beyond it. Finally, we discuss a few existing challenges in orthorhombic 2D vdW magnets, overcome which would pave the way towards magneto-optical, opto-magnetic, and spintronic devices based on orthorhombic 2D vdW magnetism.
format Preprint
id arxiv_https___arxiv_org_abs_2503_10413
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Emerging orthorhombic two-dimensional van der Waals magnets
Guo, Xiaoyu
Liu, Wenhao
Lv, Bing
Zhao, Liuyan
Materials Science
Mesoscale and Nanoscale Physics
Two-dimensional (2D) magnetism realized in van der Waals (vdW) materials has expanded to include a great variety of magnetic phases, over a short decade since its first discovery in 2016-2017. However, most of the investigated vdW magnets so far have highly symmetric crystal fields and isotropic in-plane lattice structures, making their 2D magnetism robust but often classical and expected. In this Perspective, we highlight a family of vdW magnets that have distorted crystal fields with low symmetries and orthorhombic crystal lattices with strong anisotropy, and furthermore, show their prospects for realizing a much richer landscape of magnetic phases and phase transitions. First, we introduce the classification of 2D vdW magnets based on their crystal fields and make a contrast between the orthorhombic vdW magnets of focus here and other popular honeycomb/hexagonal/kagome vdW magnets. We then discuss the material candidates, the emergent properties, and the designed controls for these orthorhombic 2D vdW magnets, using the representative CrSBr as an example and extending beyond it. Finally, we discuss a few existing challenges in orthorhombic 2D vdW magnets, overcome which would pave the way towards magneto-optical, opto-magnetic, and spintronic devices based on orthorhombic 2D vdW magnetism.
title Emerging orthorhombic two-dimensional van der Waals magnets
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2503.10413