凝聚态物理
单层
材料科学
磁性半导体
铁磁性
磁各向异性
各向异性
兴奋剂
磁场
联轴节(管道)
磁性
极化(电化学)
半导体
磁畴
感应耦合
Berry连接和曲率
磁矩
曲率
应变工程
磁化
热的
自旋极化
磁铁
作者
Shujing Li,Mei Zhou,Menglei Li,Fawei Zheng,XiaoHong Shao,Ping Zhang
摘要
In this study, we predict a class of two-dimensional f-electron bipolar magnetic semiconductors, GdIMH (M=S,Se), using first-principles calculations. Monolayer GdIMH has excellent dynamic and thermal stability, higher magnetic anisotropy, and in-plane easy magnetic plane. Notably, it is also a field-induced ferrovalley material. When magnetizing along the out-of-plane direction, the combination of ferromagnetic and spin–orbit coupling effects induces a valley polarization as high as 163 meV and the Berry curvature values at the K and K′ valleys exhibit opposite signs with different absolute values. Furthermore, under this out-of-plane magnetization, biaxial strain can further enhance the valley splitting and magnetic anisotropy energy, while charge doping can realize the transition from a bipolar magnetic semiconductor to a half-metal. These results indicate that the GdIMH monolayer is a potential multifunctional 2D f-electron ferromagnet.
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