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Electrically tunable Dirac-point resonance induced by a nanomagnet absorbed on the topological insulator surface

机译:拓扑绝缘体表面上吸收的纳米磁铁引起的电可调狄拉克点共振

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摘要

We investigate the effect of spin-inelastic scattering of Dirac electrons off a high-spin nanomagnet adsorbed on a topological insulator (TI) surface, in which transitions of the nanomagnet between its internal magnetic levels are taken into account, beyond the classic spin theory. It is found that the presence of magnetic anisotropy of nanomagnets can result in a Dirac-point resonance peak in local density of states. It can significantly modify the topologically protected Dirac surface-state spectrum at the Dirac point, quite different from previously reported low-energy resonances. Furthermore, we propose to tune electrically the appearance of the Dirac-point resonance peak and its height by use of the spin-flip torque effect. This provides an approach to engineer the Dirac cone and tune the Dirac electron properties on the TI surface in the absence of an external magnetic field.
机译:我们研究了吸附在拓扑绝缘体(TI)表面的高自旋纳米磁体上Dirac电子的自旋非弹性散射的影响,其中不考虑经典自旋理论,还考虑了纳米磁体内部磁能级之间的跃迁。发现纳米磁体的磁各向异性的存在可以在状态的局部密度中导致狄拉克点共振峰。它可以在Dirac点上显着修改拓扑受保护的Dirac表面态光谱,与以前报道的低能共振大不相同。此外,我们建议通过自旋翻转转矩效应来电调谐狄拉克点共振峰的外观及其高度。这提供了一种在没有外部磁场的情况下设计狄拉克锥和调整TI表面上狄拉克电子性质的方法。

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