论文标题
在外部磁场下(M = Cr,Mn,Fe)在抗铁磁M $ _2 $中的极性磁光kerr效应
Polar magneto-optical Kerr effect in antiferromagnetic M$_2$As (M=Cr, Mn, Fe) under an external magnetic field
论文作者
论文摘要
抗铁磁金属由于在Terahertz频率制度中的预期快速响应动态而引起了对记忆应用的极大兴趣。由于弱高阶磁光信号和磁性结构对外部磁场的鲁棒性,从磁场读取并将信息写入这些材料不容易实现。偏振电磁辐射是探测其反应的有前途的替代方法,但是,当存在理想的抗磁对称性对称性时,这种反应就会消失。因此,在这项工作中,我们将第一原理模拟与在外部磁场下的极性磁光kerr效应的测量相结合,以研究抗铁磁M $ _2 $的磁光反应AS(M = Cr,Mn和Fe)。我们设计了一种计算方案,以使用磁性倾斜的约束来计算总能量变化的磁敏感性。我们对极光磁性kerr旋转和椭圆度的光谱依赖性的预测使我们能够将这些效果归因于破坏磁对称性。我们表明,倾斜会影响交换相互作用,而随着倾斜角的变化,自旋轨道相互作用仍然不受影响。我们的工作提供了对频带结构水平的极性磁光kerr效应的理解,并强调了搜索具有磁磁响应较大的材料时磁敏感性的重要性。
Antiferromagnetic metals attract tremendous interest for memory applications due to their expected fast response dynamics in the terahertz frequency regime. Reading from and writing information into these materials is not easily achievable using magnetic fields, due to weak high-order magneto-optical signals and robustness of the magnetic structure against external magnetic fields. Polarized electromagnetic radiation is a promising alternative for probing their response, however, when ideal antiferromagnetic symmetry is present, this response vanishes. Hence, in this work we combine first-principles simulations with measurements of the polar magneto-optical Kerr effect under external magnetic fields, to study magneto-optical response of antiferromagnetic M$_2$As (M=Cr, Mn, and Fe). We devise a computational scheme to compute the magnetic susceptibility from total-energy changes using constraints on magnetic-moment tilting. Our predictions of the spectral dependence of polar magneto-optical Kerr rotation and ellipticity allow us to attribute these effects to breaking of the magnetic symmetry. We show that tilting affects the exchange interaction, while the spin-orbit interaction remains unaffected as the tilting angle changes. Our work provides understanding of the polar magneto-optical Kerr effect on a band structure level and underscores the importance of the magnetic susceptibility when searching for materials with large magneto-optical response.