We perform an ab initio non-adiabatic molecular dynamics simulation to investigate the non-equilibrium spin and electron dynamics in a prototypical topological insulator (TI) Bi(2)Se(3). Different from the ground state, we reveal that backscattering can happen in an oscillating manner between time-reversal pair topological surface states (TSSs) in the non-equilibrium dynamics. Analysis shows the phonon excitation induces orbital composition change by electron-phonon interaction, which further stimulates spin canting through spin-orbit coupling. The spin canting of time-reversal pair TSSs leads to the non-zero non-adiabatic coupling between them and then issues in backscattering. Both the spin canting and backscattering result in ultrafast spin relaxation with a timescale around 100Â fs. This study provides critical insights into the non-equilibrium electron and spin dynamics in TI at the ab initio level and paves a way for the design of ultrafast spintronic materials.
Excited electron and spin dynamics in topological insulator: A perspective from ab initio non-adiabatic molecular dynamics.
拓扑绝缘体中激发电子和自旋动力学:从头算非绝热分子动力学的角度
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作者:Zhao Chuanyu, Zheng Qijing, Zhao Jin
| 期刊: | Fundamental Research | 影响因子: | 6.300 |
| 时间: | 2022 | 起止号: | 2022 Mar 18; 2(4):506-510 |
| doi: | 10.1016/j.fmre.2022.03.006 | ||
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