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    Bulk and surface electronic structure of MoAlB(010)

    Gianmarco Gatti1, Amalie H. Svaneborg2, Wu Bing3, Gesa-R. Siemann1, Anders S. Mortensen1, Naina Kushwaha4,5, Jennifer Rigden4, Jakob K. Svaneborg2, Matthew D. Watson6 et al.

    Timur K. Kim6, Charlotte E. Sanders4,5, Kristian S. Thygesen2, Zdenek Sofer3, and Philip Hofmann1,*

    • *Contact author: philip@phys.au.dk

    Phys. Rev. B 114, 165121 – Published 15 September, 2026

    DOI: https://doi.org/10.1103/8f14-9n7p

    Abstract

    The bulk and surface electronic structure of MoAlB(010) is studied by a combination of angle-resolved photoemission spectroscopy and density functional calculations. The observed bulk Fermi-level crossings agree with the previously reported bulk Fermi surface of the material. Additionally, we find several surface states in the wide projected bulk band gaps around the Fermi energy. The surface states differ in their stability under residual-gas exposure in the vacuum system and in the magnitude of their Rashba-type spin-orbit splitting. We explain this in terms of their elemental and orbital character. A surface state arising from Al dangling bonds is sensitive to surface contamination, whereas a mainly Mo-derived surface state exhibits the stronger spin-orbit splitting.

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