Silicon surface with giant spin splitting

We demonstrate a giant Rashba-type spin splitting on a semiconducting substrate by means of a Bi-trimer adlayer on a Si(111) wafer. The in-plane inversion symmetry is broken inducing a giant spin splitting with a Rashba energy of about 140 meV, much larger than what has previously been reported for...

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Veröffentlicht in:Physical review letters 2009-07, Vol.103 (4), p.046803-046803, Article 046803
Hauptverfasser: Gierz, I, Suzuki, T, Frantzeskakis, E, Pons, S, Ostanin, S, Ernst, A, Henk, J, Grioni, M, Kern, K, Ast, C R
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Sprache:eng
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Zusammenfassung:We demonstrate a giant Rashba-type spin splitting on a semiconducting substrate by means of a Bi-trimer adlayer on a Si(111) wafer. The in-plane inversion symmetry is broken inducing a giant spin splitting with a Rashba energy of about 140 meV, much larger than what has previously been reported for any semiconductor heterostructure. The separation of the electronic states is larger than their lifetime broadening, which has been directly observed with angular resolved photoemission spectroscopy. The experimental results are confirmed by relativistic first-principles calculations.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.103.046803