论文标题

可调磁光学效果,异常大厅效应和二维房间 - 温度的铁磁铁$ 1T $ -CRTE $ _2 $

Tunable magneto-optical effect, anomalous Hall effect and anomalous Nernst effect in two-dimensional room-temperature ferromagnet $1T$-CrTe$_2$

论文作者

Yang, Xiuxian, Zhou, Xiaodong, Feng, Wanxiang, Yao, Yugui

论文摘要

利用第一原理密度功能理论与群体理论分析一起计算,我们系统地研究了最近发现的二维房间 - 富含费罗米格尼网$ 1T $ 1T $ ___2 $ __________2 $:我们发现,自旋更喜欢通过磁晶各向异性能量计算的面板方向。当旋转在原子平面内旋转时,Moe,Ahe和Ane的周期为$2π/3 $,如果存在垂直于自旋方向的镜面,则将禁止它们。通过将自旋从平面内到平面外方向重新定位,MUE,AHE和ANE通过一个数量级左右增强。此外,我们建立了多层$ 1T $ -crte $ _2 $的层磁性属性,并分别预测了biLayer和TriLayer $ 1T $ -crte $ _2 $的抗fiferromagnetism和Ferromagnetism。由于存在时空反转对称性,因此禁止使用反铁磁性双层$ 1T $ -crte $ _2 $的MOE,AHE和ANE,而所有这些都在Ferromagnetic TriLayer中激活了所有这些,$ 1T $ -Crte $ _2 $ _2 $ and Moe $ _2 $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ $ 1T。我们的结果表明,通过更改旋转方向和层编号,可以有效调节磁极光学和异常的传输专有$ 1T $ -CRTE $ _2 $。

Utilizing the first-principles density functional theory calculations together with group theory analyses, we systematically investigate the spin order-dependent magneto-optical effect (MOE), anomalous Hall effect (AHE), and anomalous Nernst effect (ANE) in a recently discovered two-dimensional room-temperature ferromagnet $1T$-CrTe$_2$. We find that the spin prefers an in-plane direction by the magnetocrystalline anisotropy energy calculations. The MOE, AHE, and ANE display a period of $2π/3$ when the spin rotates within the atomic plane, and they are forbidden if there exists a mirror plane perpendicular to the spin direction. By reorienting the spin from in-plane to out-of-plane direction, the MOE, AHE, and ANE are enhanced by around one order of magnitude. Moreover, we establish the layer-dependent magnetic properties for multilayer $1T$-CrTe$_2$ and predict antiferromagnetism and ferromagnetism for bilayer and trilayer $1T$-CrTe$_2$, respectively. The MOE, AHE, and ANE are prohibited in antiferromagnetic bilayer $1T$-CrTe$_2$ due to the existence of the spacetime inversion symmetry, whereas all of them are activated in ferromagnetic trilayer $1T$-CrTe$_2$ and the MOE is significantly enhanced compared to monolayer $1T$-CrTe$_2$. Our results show that the magneto-optical and anomalous transports proprieties of $1T$-CrTe$_2$ can be effectively modulated by altering spin direction and layer number.

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