Эффективная генерация спина в графене на магнитной подложке при поглощении света в дальнем ИК диапазоне

Константин Сергеевич Денисов, К.Ю. Голеницкий
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Abstract

The magnetic proximity effect is significant for atomically thin layers of two-dimensional materials. In this paper, we study the mechanisms of photogeneration spin-polarized charges in graphene on a magnetic insulator. The magnetic proximity effect and lowered symmetry at the interface enhance the spin response of graphene in the alternating electric field of the incident light. The first leads to spin splitting of the linear spectrum of Dirac electrons. The second increases the role of the spin-orbit interaction. The main mechanisms of photogenerated spin polarization have been considered, including spin flip intersubband and interband transitions, and their contribution to the absorption coefficient of graphene.
磁性底座上石墨后有效振荡,远红外波段吸收光
磁邻近效应对于二维材料的原子薄层是显著的。在本文中,我们研究了磁绝缘体上石墨烯光产生自旋极化电荷的机制。磁邻近效应和界面处对称性的降低增强了石墨烯在入射光交变电场中的自旋响应。第一个导致狄拉克电子线性谱的自旋分裂。第二种是增加自旋轨道相互作用的作用。讨论了光致自旋极化的主要机制,包括自旋翻转和带间跃迁,以及它们对石墨烯吸收系数的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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