Differential cross sections for non-sequential double ionization of He by 52eV photons from the Free Electron Laser in Hamburg, FLASH
Identifieur interne : 000A06 ( Main/Exploration ); précédent : 000A05; suivant : 000A07Differential cross sections for non-sequential double ionization of He by 52eV photons from the Free Electron Laser in Hamburg, FLASH
Auteurs : M. Kurka [Allemagne] ; J. Feist [États-Unis] ; D A Horner [États-Unis] ; A. Rudenko [Allemagne] ; Y H Jiang [Allemagne] ; K U Khnel [Allemagne] ; L. Foucar [Allemagne] ; T N Rescigno [États-Unis] ; C W Mccurdy [États-Unis] ; R. Pazourek ; S. Nagele ; M. Schulz [États-Unis] ; O. Herrwerth [Allemagne] ; M. Lezius [Allemagne] ; M F Kling [Allemagne] ; M. Schffler [États-Unis] ; A. Belkacem [États-Unis] ; S. Dsterer [Allemagne] ; R. Treusch [Allemagne] ; B I Schneider [États-Unis] ; L A Collins [États-Unis] ; J. Burgdrfer ; C D Schrter [Allemagne] ; R. Moshammer [Allemagne] ; J. Ullrich [Allemagne]Source :
- New Journal of Physics [ 1367-2630 ] ; 2010.
Abstract
Two-photon double ionization of He is studied at the Free Electron Laser in Hamburg (FLASH) by inspecting He2 momentum () distributions at 52eV photon energy. We demonstrate that recoil ion momentum distributions can be used to infer information about highly correlated electron dynamics and find the first experimental evidence for virtual sequential ionization. The experimental data are compared with the results of two calculations, both solving the time-dependent Schrdinger equation. We find good overall agreement between experiment and theory, with significant differences for cuts along the polarization direction that cannot be explained by the experimental resolution alone.
Url:
DOI: 10.1088/1367-2630/12/7/073035
Affiliations:
- Allemagne, États-Unis
- Bade-Wurtemberg, Californie, District de Karlsruhe, Hambourg, Maryland, Massachusetts, Missouri (État), Nouveau-Mexique, Virginie
- Hambourg, Heidelberg
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Le document en format XML
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<front><div type="abstract">Two-photon double ionization of He is studied at the Free Electron Laser in Hamburg (FLASH) by inspecting He2 momentum () distributions at 52eV photon energy. We demonstrate that recoil ion momentum distributions can be used to infer information about highly correlated electron dynamics and find the first experimental evidence for virtual sequential ionization. The experimental data are compared with the results of two calculations, both solving the time-dependent Schrdinger equation. We find good overall agreement between experiment and theory, with significant differences for cuts along the polarization direction that cannot be explained by the experimental resolution alone.</div>
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<name sortKey="Kurka, M" sort="Kurka, M" uniqKey="Kurka M" first="M" last="Kurka">M. Kurka</name>
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<name sortKey="Moshammer, R" sort="Moshammer, R" uniqKey="Moshammer R" first="R" last="Moshammer">R. Moshammer</name>
<name sortKey="Rudenko, A" sort="Rudenko, A" uniqKey="Rudenko A" first="A" last="Rudenko">A. Rudenko</name>
<name sortKey="Rudenko, A" sort="Rudenko, A" uniqKey="Rudenko A" first="A" last="Rudenko">A. Rudenko</name>
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<name sortKey="Ullrich, J" sort="Ullrich, J" uniqKey="Ullrich J" first="J" last="Ullrich">J. Ullrich</name>
<name sortKey="Ullrich, J" sort="Ullrich, J" uniqKey="Ullrich J" first="J" last="Ullrich">J. Ullrich</name>
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