In-plane magnetic anisotropy of Fe atoms on Bi2Se3(111)

The robustness of the gapless topological surface state hosted by a 3D topological insulator against perturbations of magnetic origin has been the focus of recent investigations. We present a comprehensive study of the magnetic properties of Fe impurities on the prototypical 3D topological insulator...

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Veröffentlicht in:Physical review letters 2012-06, Vol.108 (25), p.256811-256811
Hauptverfasser: Honolka, J, Khajetoorians, A A, Sessi, V, Wehling, T O, Stepanow, S, Mi, J-L, Iversen, B B, Schlenk, T, Wiebe, J, Brookes, N B, Lichtenstein, A I, Hofmann, Ph, Kern, K, Wiesendanger, R
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Sprache:eng
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Zusammenfassung:The robustness of the gapless topological surface state hosted by a 3D topological insulator against perturbations of magnetic origin has been the focus of recent investigations. We present a comprehensive study of the magnetic properties of Fe impurities on the prototypical 3D topological insulator Bi(2)Se(3) using local low-temperature scanning tunneling spectroscopy and integral x-ray magnetic circular dichroism techniques. Single Fe adatoms on the Bi(2)Se(3) surface, in the coverage range ≈ 1% of a monolayer, are heavily relaxed into the surface and exhibit a magnetic easy axis within the surface plane, contrary to what was assumed in recent investigations on the supposed opening of a gap. Using ab initio approaches, we demonstrate that an in-plane easy axis arises from the combination of the crystal field and dynamic hybridization effects.
ISSN:1079-7114
DOI:10.1103/PhysRevLett.108.256811