论文标题
强大的无间隙表面状态与表面磁性杂质(bi $ _ {0.5} $ sb $ _ {0.5} $)$ _ 2 $ _ 2 $ _ 2 $ te $ _3 $证明是由原位磁磁管测量所证明的
Robust Gapless Surface State against Surface Magnetic Impurities on (Bi$_{0.5}$Sb$_{0.5}$)$_2$Te$_3$ Evidenced by In Situ Magnetotransport Measurements
论文作者
论文摘要
尽管实验和理论上的努力广泛,但表面磁杂质对拓扑绝缘体(TI)拓扑表面状态的影响的重要问题仍未解决。我们阐明了Cr杂质对(bi $ _ {0.5} $ sb $ _ {0.5} $ _ {0.5} $)$ _ {2} $ _ {2} $ _ {3} $的影响:用静电门控以每种增量进行。在实验鉴定的表面传输方案中,测得的最小电子密度显示出具有Cr密度($ n _ {\ Mathrm {Cr}} $)的非单调演化:首先增加,然后以$ N _ {\ Mathrm {Cr}} $减少。这种异常的行为归因于CR的双重作用是电离杂质和电子供体,在低和高$ n _ {\ Mathrm {\ mathrm {cr}} $下具有增强和减少表面状态的电子不均匀性的竞争作用。对于不同的$ n _ {\ mathrm {cr}} $,在一个和同一样本上获得了磁导率,这表明弱的抗静脉效应持续存在,表面状态仍然存在,并且表面状态保持无间隙至最高的$ n _ {\ mathrm {cr}} $相反,与之相反,与之相反,该持续的距离是纪念日的开放。 观点。
Despite extensive experimental and theoretical efforts, the important issue of the effects of surface magnetic impurities on the topological surface state of a topological insulator (TI) remains unresolved. We elucidate the effects of Cr impurities on epitaxial thin films of (Bi$_{0.5}$Sb$_{0.5}$)$_{2}$Te$_{3}$: Cr adatoms are incrementally deposited onto the TI held in ultrahigh vacuum at low temperatures, and \textit{in situ} magnetoconductivity and Hall effect measurements are performed at each increment with electrostatic gating. In the experimentally identified surface transport regime, the measured minimum electron density shows a non-monotonic evolution with the Cr density ($n_{\mathrm{Cr}}$): it first increases and then decreases with $n_{\mathrm{Cr}}$. This unusual behavior is ascribed to the dual roles of the Cr as ionized impurities and electron donors, having competing effects of enhancing and decreasing the electronic inhomogeneities in the surface state at low and high $n_{\mathrm{Cr}}$ respectively. The magnetoconductivity is obtained for different $n_{\mathrm{Cr}}$ on one and the same sample, which yields clear evidence that the weak antilocalization effect persists and the surface state remains gapless up to the highest $n_{\mathrm{Cr}}$, contrary to the expectation that the deposited Cr should break the time reversal symmetry and induce a gap opening at the Dirac point.