Topologically Entangled Rashba-Split Shockley States on the Surface of Grey Arsenic

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Abstract

We discover a pair of spin-polarized surface bands on the (111) face of grey arsenic by using angle-resolved photoemission spectroscopy (ARPES). In the occupied side, the pair resembles typical nearly-free-electron Shockley states observed on noble-metal surfaces. However, pump-probe ARPES reveals that the spin-polarized pair traverses the bulk band gap and that the crossing of the pair at Γ is topologically unavoidable. First-principles calculations well reproduce the bands and their nontrivial topology; the calculations also support that the surface states are of Shockley type because they arise from a band inversion caused by crystal field. The results provide compelling evidence that topological Shockley states are realized on As(111).

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Zhang, P., Ma, J. Z., Ishida, Y., Zhao, L. X., Xu, Q. N., Lv, B. Q., … Shin, S. (2017). Topologically Entangled Rashba-Split Shockley States on the Surface of Grey Arsenic. Physical Review Letters, 118(4). https://doi.org/10.1103/PhysRevLett.118.046802

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