Visualizing and Steering Dissociative Frustrated Double Ionization of Hydrogen Molecules

We experimentally visualize the dissociative frustrated double ionization of hydrogen molecules by using few-cycle laser pulses in a pump-probe scheme, in which process the tunneling ionized electron is recaptured by one of the outgoing nuclei of the breaking molecule. Three internuclear distances a...

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Veröffentlicht in:Physical review letters 2017-12, Vol.119 (25), p.253202-253202, Article 253202
Hauptverfasser: Zhang, Wenbin, Yu, Zuqing, Gong, Xiaochun, Wang, Junping, Lu, Peifen, Li, Hui, Song, Qiying, Ji, Qinying, Lin, Kang, Ma, Junyang, Li, Hanxiao, Sun, Fenghao, Qiang, Junjie, Zeng, Heping, He, Feng, Wu, Jian
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Sprache:eng
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Zusammenfassung:We experimentally visualize the dissociative frustrated double ionization of hydrogen molecules by using few-cycle laser pulses in a pump-probe scheme, in which process the tunneling ionized electron is recaptured by one of the outgoing nuclei of the breaking molecule. Three internuclear distances are recognized to enhance the dissociative frustrated double ionization of molecules at different instants after the first ionization step. The recapture of the electron can be further steered to one of the outgoing nuclei as desired by using phase-controlled two-color laser pulses. Both the experimental measurements and numerical simulations suggest that the Rydberg atom is favored to emit to the direction of the maximum of the asymmetric optical field. Our results on the one hand intuitively visualize the dissociative frustrated double ionization of molecules, and on the other hand open the possibility to selectively excite the heavy fragment ejected from a molecule.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.119.253202