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Topological states on the gold surface

机译:金表面的拓扑状态

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Gold surfaces host special electronic states that have been understood as a prototype of Shockley surface states. These surface states are commonly employed to benchmark the capability of angle-resolved photoemission spectroscopy (ARPES) and scanning tunnelling spectroscopy. Here we show that these Shockley surface states can be reinterpreted as topologically derived surface states (TDSSs) of a topological insulator (TI), a recently discovered quantum state. Based on band structure calculations, the Z(2)-type invariants of gold can be well-defined to characterize a TI. Further, our ARPES measurement validates TDSSs by detecting the dispersion of unoccupied surface states. The same TDSSs are also recognized on surfaces of other well-known noble metals (for example, silver, copper, platinum and palladium), which shines a new light on these long-known surface states.
机译:金表面具有特殊的电子态,这些电子态被理解为肖克利表面态的原型。这些表面状态通常用于基准角分辨光发射光谱(ARPES)和扫描隧道光谱的能力。在这里,我们证明了这些Shockley表面态可以重新解释为拓扑绝缘体(TI)(最近发现的量子态)的拓扑派生表面态(TDSSs)。基于能带结构计算,可以很好地定义金的Z(2)型不变量来表征TI。此外,我们的ARPES测量通过检测未占用表面状态的分散来验证TDSS。在其他众所周知的贵金属(例如,银,铜,铂和钯)的表面上也可以识别出相同的TDSS,这在这些众所周知的表面状态上发出了新的光辉。

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