Laser-induced photo-desorption in the Na/Cu(1 1 1) system
Desorption in the Na/Cu(1 1 1) system induced by an electronic excitation is studied using a quantal approach. The system is excited by a laser pulse in the fs range to the Na ∗ state corresponding to the transient capture of an electron by the alkali adsorbate. The present quantal approach describe...
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Veröffentlicht in: | Surface science 2008-11, Vol.602 (22), p.3477-3483 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Desorption in the Na/Cu(1
1
1) system induced by an electronic excitation is studied using a quantal approach. The system is excited by a laser pulse in the fs range to the Na
∗ state corresponding to the transient capture of an electron by the alkali adsorbate. The present quantal approach describes on an equal footing the laser-induced vibrational excitation of the adsorbate in the adsorption well and the photo-desorption process. It confirms earlier results using a semi-classical input. It also allows a discussion of the photo-desorption probability with the photon energy: the maximum of the desorption probability per absorbed photon occurs off-resonance in the high-energy wing of the electronic transition. This feature is related to the dynamics of the laser-induced process. |
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ISSN: | 0039-6028 1879-2758 |
DOI: | 10.1016/j.susc.2008.08.024 |