Electronic and magnetic properties of quasifreestanding graphene on Ni

For the purpose of recovering the intriguing electronic properties of freestanding graphene at a solid surface, graphene self-organized on a Au monolayer on Ni(111) is prepared and characterized by scanning tunneling microscopy. Angle-resolved photoemission reveals a gapless linear pi-band dispersio...

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Veröffentlicht in:Physical review letters 2008-10, Vol.101 (15), p.157601-157601, Article 157601
Hauptverfasser: Varykhalov, A, Sánchez-Barriga, J, Shikin, A M, Biswas, C, Vescovo, E, Rybkin, A, Marchenko, D, Rader, O
Format: Artikel
Sprache:eng
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Zusammenfassung:For the purpose of recovering the intriguing electronic properties of freestanding graphene at a solid surface, graphene self-organized on a Au monolayer on Ni(111) is prepared and characterized by scanning tunneling microscopy. Angle-resolved photoemission reveals a gapless linear pi-band dispersion near K[over] as a fingerprint of strictly monolayer graphene and a Dirac crossing energy equal to the Fermi energy (EF) within 25 meV meaning charge neutrality. Spin resolution shows a Rashba effect on the pi states with a large (approximately 13 meV) spin-orbit splitting up to EF which is independent of k.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.101.157601