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    Atomic and electronic structure of ideal and reconstructed α-Sn (111) surface

    Zhong-Yi Lu, Guido L. Chiarotti, and S. Scandolo

    E. Tosatti

    • International School for Advanced Studies (SISSA), Via Beirut 2, I-34014 Trieste, Italy
    • Istituto Nazionale di Fisica della Materia (INFM), Trieste, Italy

    • International School for Advanced Studies (SISSA), Via Beirut 2, I-34014 Trieste, Italy; Istituto Nazionale di Fisica della Materia
    • (INFM), Trieste, Italy;
    • International Center for Theoretical Physics (ICTP), P.O. Box 586, I-34014 Trieste, Italy

    Phys. Rev. B 54, 11769 – Published 15 October, 1996

    DOI: https://doi.org/10.1103/PhysRevB.54.11769

    Abstract

    We have carried out an ab initio study of α-Sn (111), with the aim of predicting and understanding its structure, reconstructions, and electronic states. We consider a variety of structural possibilities, and optimize them by moving atoms according to Hellmann-Feynman forces. Our results indicate that the unreconstructed surface is highly unstable, while a variety of reconstructions compete for the true ground state. Extrapolated trends from diamond to Si to Ge are well borne out, with a 2×1π-bonded chain reconstruction prevailing in the absence of adatoms, and a c(4×2) or (2×2) basic adatom-restatom unit reconstruction otherwise. Accompanying surface bucklings are in both cases larger than in Si and Ge, with consequently large ionic charge transfers predicted. Search for a β-Sn-like metallic state of the surface turned out to be inconclusive. © 1996 The American Physical Society.

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