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Scattering properties of the three-dimensional topological insulator Sb 2 Te 3 : Coexistence of topologically trivial and nontrivial surface states with opposite spin-momentum helicityph

机译:三维拓扑绝缘体Sb 2 Te 3的散射特性:具有自旋动量螺旋度相反的拓扑琐碎和非琐碎表面状态的共存

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摘要

The binary chalcogenides Bi2Te3 and Bi2Se3 are the most widely studied topological insulators. Although the quantum anomalous Hall effect has recently been observed in magnetically doped Sb2Te3, this compound has been studied to a much lesser extent. Here, by using energy-resolved quasiparticle interference mapping, we investigate the scattering events of pristine Sb2Te3 surfaces. We find that, in addition to the Dirac fermions, another strongly spin-polarized surface resonance emerges at higher energies in the unoccupied electronic states. Although the two surface states are of different origin, i.e., topologically protected and trivial, respectively, both show strongly directional scattering properties and absence of backscattering. A comparison with ab initio calculations demonstrates that this is a direct consequence of their spin-momentum–locked spin texture which is found to exhibit an opposite rotational sense for the trivial state and the Dirac state.
机译:二元硫属元素化物Bi2Te3和Bi2Se3是研究最广泛的拓扑绝缘体。尽管最近在磁性掺杂的Sb2Te3中观察到了量子异常霍尔效应,但对该化合物的研究程度却要低得多。在这里,通过使用能量分辨准粒子干涉图,我们研究了原始Sb2Te3表面的散射事件。我们发现,除了狄拉克费米子以外,在未占据的电子态中,另一种强自旋极化的表面共振也会在较高的能量处出现。尽管这两种表面态的起源不同,即分别在拓扑上受保护和在表面上是微不足道的,但两者均显示出强烈的方向性散射特性并且没有反向散射。与从头算计算的比较表明,这是它们的自旋动量锁定自旋纹理的直接结果,该自旋动量锁定自旋纹理对于琐碎状态和狄拉克状态表现出相反的旋转方向。

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