Attosecond time-resolved photoemission from core and valence states of magnesium

We report on laser-assisted attosecond photoemission from single-crystalline magnesium. In strong contrast to the previously investigated transition metal tungsten, photoelectron wave packets originating from the localized core level and delocalized valence-band states are launched simultaneously fr...

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Veröffentlicht in:Physical review letters 2012-08, Vol.109 (8), p.087401-087401, Article 087401
Hauptverfasser: Neppl, S, Ernstorfer, R, Bothschafter, E M, Cavalieri, A L, Menzel, D, Barth, J V, Krausz, F, Kienberger, R, Feulner, P
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Sprache:eng
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Zusammenfassung:We report on laser-assisted attosecond photoemission from single-crystalline magnesium. In strong contrast to the previously investigated transition metal tungsten, photoelectron wave packets originating from the localized core level and delocalized valence-band states are launched simultaneously from the solid within the experimental uncertainty of 20 as. This phenomenon is shown to be compatible with a heuristic model based on free-particle-like propagation of the electron wave packets generated inside the crystal by the attosecond excitation pulse and their subsequent interaction with the assisting laser field at the metal-vacuum interface.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.109.087401