论文标题

在拓扑边缘状态下磁性引起的反向散射的观察

Observation of backscattering induced by magnetism in a topological edge state

论文作者

Jäck, Berthold, Xie, Yonglong, Bernevig, B. Andrei, Yazdani, Ali

论文摘要

拓扑绝缘子的边界模式受到非平凡散装电子状态的对称性的保护。除非这些对称性被打破,否则它们可能会引起新的现象,例如一维(1D)拓扑边缘状态的量子自旋霍尔效应,其中准粒子反向散射抑制了时间反向对称性(TRS)。在这里,我们研究了在没有TRS的情况下,预计发生反向散射的1D拓扑边缘状态的性质。使用扫描隧穿显微镜的光谱成像和自旋极化测量值,我们比较了在原始的bismuth双层的边缘状态下发生的准粒子干扰(QPI)与发生在双层的边缘状态的边缘,该状态是由屈光动力学铁簇终止的,这些晶状体终止。我们在装饰的双层边缘上的实验显示了一个额外的QPI分支,该分支可以与时间反转频带伙伴之间的Brioullin区中心跨Brioullin区中心相关。观察到的QPI特征与具有一个Kramer对频段的拓扑边缘状态的理论期望完全匹配。总之,我们的结果提供了进一步的证据,证明了鞭毛的非平凡性质,尤其是在通过局部磁性破裂引起的螺旋拓扑边缘状态内的反向散射。

The boundary modes of topological insulators are protected by the symmetries of the non-trivial bulk electronic states. Unless these symmetries are broken, they can give rise to novel phenomena, such as the quantum spin Hall effect in one-dimensional (1D) topological edge states, where quasiparticle backscattering is suppressed by time-reversal symmetry (TRS). Here, we investigate the properties of the 1D topological edge state of bismuth in the absence of TRS, where backscattering is predicted to occur. Using spectroscopic imaging and spin-polarized measurements with a scanning tunneling microscope, we compared quasiparticle interference (QPI) occurring in the edge state of a pristine bismuth bilayer with that occurring in the edge state of a bilayer, which is terminated by ferromagnetic iron clusters that break TRS. Our experiments on the decorated bilayer edge reveal an additional QPI branch, which can be associated with spin-flip scattering across the Brioullin zone center between time-reversal band partners. The observed QPI characteristics exactly match with theoretical expectations for a topological edge state, having one Kramer's pair of bands. Together, our results provide further evidence for the non-trivial nature of bismuth, and, in particular, demonstrate backscattering inside a helical topological edge state induced by broken TRS through local magnetism.

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