Observation of the spin-polarized surface state in a noncentrosymmetric superconductor BiPd

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Abstract

Recently, noncentrosymmetric superconductor BiPd has attracted considerable research interest due to the possibility of hosting topological superconductivity. Here we report a systematic high-resolution angle-resolved photoemission spectroscopy (ARPES) and spin-resolved ARPES study of the normal state electronic and spin properties of BiPd. Our experimental results show the presence of a surface state at higher-binding energy with the location of Dirac point at around 700 meV below the Fermi level. The detailed photon energy, temperature-dependent and spin-resolved ARPES measurements complemented by our first-principles calculations demonstrate the existence of the spin-polarized surface states at high-binding energy. The absence of such spin-polarized surface states near the Fermi level negates the possibility of a topological superconducting behaviour on the surface. Our direct experimental observation of spin-polarized surface states in BiPd provides critical information that will guide the future search for topological superconductivity in noncentrosymmetric materials.

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Neupane, M., Alidoust, N., Hosen, M. M., Zhu, J. X., Dimitri, K., Xu, S. Y., … Durakiewicz, T. (2016). Observation of the spin-polarized surface state in a noncentrosymmetric superconductor BiPd. Nature Communications, 7. https://doi.org/10.1038/ncomms13315

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