论文标题
光诱导的静态磁化:非线性Edelstein效应
Light-Induced Static Magnetization: Nonlinear Edelstein Effect
论文作者
论文摘要
我们从理论上和计算上证明可以通过非线性Edelstein效应(NLEE)在光照射下产生静态磁化。 NLEE适用于线性和循环极化的光线下的半导体,并且在空间反转或时间反转对称性中没有任何约束。值得注意的是,在非磁性材料中线性极化的光线下可以诱导磁化。通过从头开始计算,我们揭示了NLEE的几个突出特征。我们发现轨道贡献可以大大大于自旋贡献。以及各种有序的磁化,包括抗铁磁,铁磁等,都可以通过NLEE实现,这可能有助于许多应用,例如揭示隐藏的物理效应,在空间上降低了磁化,或操纵抗铁磁材料的磁化。还讨论了NLEE与其他磁化效应之间的关系,包括Faraday逆效应和棉花 - 摩托顿效应。
We theoretically and computationally demonstrate that static magnetization can be generated under light illumination via nonlinear Edelstein effect (NLEE). NLEE is applicable to semiconductors under both linearly and circularly polarized light, and there are no constraints from either spatial inversion or time-reversal symmetry. Remarkably, magnetization can be induced under linearly polarized light in nonmagnetic materials. With ab initio calculations, we reveal several prominent features of NLEE. We find that the orbital contributions can be significantly greater than the spin contributions. And magnetization with various orderings, including anti-ferromagnetic, ferromagnetic, etc., are all realizable with NLEE, which may facilitate many applications, such as unveiling hidden physical effects, creating a spatially varying magnetization, or manipulating the magnetization of anti-ferromagnetic materials. The relationship between NLEE and other magneto-optic effects, including the inverse Faraday effect and inverse Cotton-Mouton effect, is also discussed.