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三维拓扑绝缘体中面外自旋纹理的散射对称性破缺诱导自旋光电流。

Scattering symmetry-breaking induced spin photocurrent from out-of-plane spin texture in a 3D topological insulator.

作者信息

Huang Y Q, Buyanova I A, Chen W M

机构信息

Department of Physics, Chemistry and Biology, Linköping University, 581 83, Linköping, Sweden.

出版信息

Sci Rep. 2020 Jun 30;10(1):10610. doi: 10.1038/s41598-020-67612-3.

Abstract

We theoretically study helicity-dependent photocurrent in a three-dimensional topological insulator BiTe under elastic scattering of different symmetries. By exploring spin-selective optical transitions and symmetry-breaking scattering, we are able to address the out-of-plane spin texture of the topological helical surface states and to generate directional, spin-polarization tunable photocurrent that is otherwise forbidden for the original C symmetry of the surface. This can be achieved regardless of the Fermi level, even under the condition when the topological states are inaccessible in dark. This work paves the way to robustly explore the out-of-plane spin texture for harvesting opto-spintronic functionalities of topological insulators.

摘要

我们从理论上研究了三维拓扑绝缘体BiTe在不同对称性弹性散射下的螺旋度相关光电流。通过探索自旋选择性光学跃迁和对称性破缺散射,我们能够确定拓扑螺旋表面态的面外自旋纹理,并产生定向的、自旋极化可调的光电流,而对于表面原来的C对称性,这种光电流是被禁止的。无论费米能级如何,即使在黑暗中无法进入拓扑态的条件下,这一点也能实现。这项工作为稳健地探索面外自旋纹理以获取拓扑绝缘体的光自旋电子功能铺平了道路。

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