Evolution of interlayer and intralayer magnetism in three atomically thin chromium trihalides

Author:

Kim Hyun HoORCID,Yang Bowen,Li Siwen,Jiang Shengwei,Jin Chenhao,Tao Zui,Nichols George,Sfigakis Francois,Zhong Shazhou,Li Chenghe,Tian ShangjieORCID,Cory David G.,Miao Guo-Xing,Shan Jie,Mak Kin Fai,Lei Hechang,Sun KaiORCID,Zhao Liuyan,Tsen Adam W.ORCID

Abstract

We conduct a comprehensive study of three different magnetic semiconductors, CrI3, CrBr3, and CrCl3, by incorporating both few-layer and bilayer samples in van der Waals tunnel junctions. We find that the interlayer magnetic ordering, exchange gap, magnetic anisotropy, and magnon excitations evolve systematically with changing halogen atom. By fitting to a spin wave theory that accounts for nearest-neighbor exchange interactions, we are able to further determine a simple spin Hamiltonian describing all three systems. These results extend the 2D magnetism platform to Ising, Heisenberg, and XY spin classes in a single material family. Using magneto-optical measurements, we additionally demonstrate that ferromagnetism can be stabilized down to monolayer in more isotropic CrBr3, with transition temperature still close to that of the bulk.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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