paper

Atomic and electronic structures of ternary iron arsenides FeAs(001) surfaces (=Ba, Sr, or Ca)

arXiv:0909.5136 · doi:10.1103/PhysRevB.81.193409

Abstract

By the first-principles electronic structure calculations, we find that energetically the most favorable cleaved FeAs(001) surface (=Ba, Sr, or Ca) is -terminated with a or order. The ordered structure yields a dimerized STM image, in agreement with the experimental observation. The atoms are found to diffuse on the surface with a small energy barrier so that the cleaving process may destroy the atoms ordering. At the very low temperatures this may result in an As-terminated surface with the atoms in randomly assembling. The As-terminated BaFeAs surface in orthorhombic phase is buckled, giving rise to a switchable STM pattern upon varying the applied bias. No any reconstruction is found for the other As-terminated surfaces. There are surface states crossing or nearby the Fermi energy in the As-terminated and -terminated surfaces. A unified physical picture is thus established to help understand the cleaved FeAs(001) surfaces.

4 pages and 4 figures

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