Surface-state localization at adatoms

Low-temperature scanning tunneling spectroscopy of magnetic and nonmagnetic metal atoms on Ag(111) and on Cu(111) surfaces reveals the existence of a common electronic resonance at an energy below the binding energies of the surface states. Using an extended Newns-Anderson model, we assign this reso...

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Veröffentlicht in:Physical review letters 2005-01, Vol.94 (3), p.036805.1-036805.4, Article 036805
Hauptverfasser: LIMOT, L, PEHLKE, E, KROGER, J, BERNDT, R
Format: Artikel
Sprache:eng
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Zusammenfassung:Low-temperature scanning tunneling spectroscopy of magnetic and nonmagnetic metal atoms on Ag(111) and on Cu(111) surfaces reveals the existence of a common electronic resonance at an energy below the binding energies of the surface states. Using an extended Newns-Anderson model, we assign this resonance to an adsorbate-induced bound state, split off from the bottom of the surface-state band, and broadened by the interaction with bulk states. A line shape analysis of the bound state indicates that Ag and Cu adatoms on Ag(111) and Cu(111), respectively, decrease the surface-state lifetime, while a cobalt adatom causes no significant change.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.94.036805