Nonvortical Rashba Spin Structure on a Surface with C_{1h} Symmetry

A totally anisotropic peculiar Rashba-Bychkov (RB) splitting of electronic bands was found on the Tl/Si(110)-(1×1) surface with C_{1h} symmetry by angle- and spin-resolved photoelectron spectroscopy and first-principles theoretical calculation. The constant energy contour of the upper branch of the...

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Veröffentlicht in:Physical review letters 2016-07, Vol.117 (1), p.016803-016803
Hauptverfasser: Annese, Emilia, Kuzumaki, Takuya, Müller, Beate, Yamamoto, Yuta, Nakano, Hiroto, Kato, Haruki, Araki, Atsushi, Ohtaka, Minoru, Aoki, Takashi, Ishikawa, Hirotaka, Hayashida, Takashi, Osiecki, Jacek R, Miyamoto, Koji, Takeichi, Yasuo, Harasawa, Ayumi, Yaji, Koichiro, Shirasawa, Tetsuroh, Nittoh, Koh-Ichi, Yang, Wooil, Miki, Kazushi, Oda, Tatsuki, Yeom, Han Woong, Sakamoto, Kazuyuki
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Sprache:eng
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Zusammenfassung:A totally anisotropic peculiar Rashba-Bychkov (RB) splitting of electronic bands was found on the Tl/Si(110)-(1×1) surface with C_{1h} symmetry by angle- and spin-resolved photoelectron spectroscopy and first-principles theoretical calculation. The constant energy contour of the upper branch of the RB split band has a warped elliptical shape centered at a k point located between Γ[over ¯] and the edge of the surface Brillouin zone, i.e., at a point without time-reversal symmetry. The spin-polarization vector of this state is in-plane and points almost the same direction along the whole elliptic contour. This novel nonvortical RB spin structure is confirmed as a general phenomenon originating from the C_{1h} symmetry of the surface.
ISSN:1079-7114
DOI:10.1103/PhysRevLett.117.016803