应变和电荷掺杂下CrSe2单层的铁磁序

Xinlong Yang, Meng Li, F. Zheng
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引用次数: 0

摘要

CrSe2单分子层是一种新合成的铁磁材料,具有良好的环境稳定性。利用第一性原理计算,对电子/空穴掺杂和不同应变条件下的CrSe2单层磁相图进行了全面的研究。结果表明,施加压缩应变可以诱导铁磁层向六边形铁磁层转变。此外,研究结果还表明,电子掺杂会减弱单层材料的铁磁性。因此,这项工作为基于CrSe2的自旋电子器件的设计提供了见解。
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A Ferrimagnetic Order of CrSe2 Monolayer Under Strain and Charge Doping
CrSe2 monolayer is a recently synthesized ferromagnetic material exhibiting remarkable environmental stability. By using first‐principles calculations, a comprehensive study on the magnetic phase diagram of CrSe2 monolayer under conditions of electron/hole doping and different strains is presented. It is demonstrated that applying compressive strain can induce a magnetic phase transition from the ferromagnetic order to a Hexagon ferrimagnetic order. Moreover, the results reveal that electron doping can attenuate the ferromagnetism in the monolayer. This work thus provides insights into the design of CrSe2‐based spintronic devices.
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