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Topological surface states above the Fermi energy in textrm{Hf}₂textrm{Te}₂textrm{P}

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arxiv 1905.06376 v1 pith:GUMHVLKR submitted 2019-05-15 cond-mat.mes-hall cond-mat.mtrl-sci

Topological surface states above the Fermi energy in textrm{Hf}₂textrm{Te}₂textrm{P}

classification cond-mat.mes-hall cond-mat.mtrl-sci
keywords textrmbandsurfacetopologicalspectroscopystructureaboveenergy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report a detailed experimental study of the band structure of the recently discovered topological material $\textrm{Hf}_{2}\textrm{Te}_2\textrm{P}$. Using the combination of scanning tunneling spectroscopy and angle-resolved photo-emission spectroscopy with surface K-doping, we probe the band structure of $\textrm{Hf}_{2}\textrm{Te}_2\textrm{P}$ with energy and momentum resolution above the Fermi level. Our experiments show the presence of multiple surface states with a linear Dirac-like dispersion, consistent with the predictions from previously reported band structure calculations. In particular, scanning tunneling spectroscopy measurements provide the first experimental evidence for the strong topological surface state predicted at 460 meV, which stems from the band inversion between Hf-d and Te-p orbitals. This band inversion comprised of more localized d-states could result in a better surface-to-bulk conductance ratio relative to more traditional topological insulators.

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