Subfemtosecond Tracing of Molecular Dynamics during Strong-Field Interaction

We introduce and experimentally demonstrate a method where the two intrinsic timescales of a molecule, the slow nuclear motion and the fast electronic motion, are simultaneously measured in a photoelectron photoion coincidence experiment. In our experiment, elliptically polarized, 750 nm, 4.5 fs las...

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Veröffentlicht in:Physical review letters 2019-12, Vol.123 (26), p.263201-263201, Article 263201
Hauptverfasser: Hanus, Václav, Kangaparambil, Sarayoo, Larimian, Seyedreza, Dorner-Kirchner, Martin, Xie, Xinhua, Schöffler, Markus S, Paulus, Gerhard G, Baltuška, Andrius, Staudte, André, Kitzler-Zeiler, Markus
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Sprache:eng
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Zusammenfassung:We introduce and experimentally demonstrate a method where the two intrinsic timescales of a molecule, the slow nuclear motion and the fast electronic motion, are simultaneously measured in a photoelectron photoion coincidence experiment. In our experiment, elliptically polarized, 750 nm, 4.5 fs laser pulses were focused to an intensity of 9×10^{14}  W/cm^{2} onto H_{2}. Using coincidence imaging, we directly observe the nuclear wave packet evolving on the 1sσ_{g} state of H_{2}^{+} during its first round-trip with attosecond temporal and picometer spatial resolution. The demonstrated method should enable insight into the first few femtoseconds of the vibronic dynamics of ionization-induced unimolecular reactions of larger molecules.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.123.263201