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Isolating strong-field dynamics in molecular systems
Author(s) -
Gal Orenstein,
Oren Pedatzur,
Ayelet J. Uzan,
Barry D. Bruner,
Y. Mairesse,
Nirit Dudovich
Publication year - 2017
Publication title -
physical review. a/physical review, a
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.391
H-Index - 283
eISSN - 2469-9934
pISSN - 2469-9926
DOI - 10.1103/physreva.95.051401
Subject(s) - attosecond , physics , decoupling (probability) , temporal resolution , ionization , optics , quantum mechanics , laser , ion , ultrashort pulse , control engineering , engineering
International audienceStrong-field ionization followed by recollision provides a unique pump-probe measurement which reveals a range of electronic processes, combining sub-Angstrom spatial and attosecond temporal resolution. A major limitation of this approach is imposed by the coupling between the spatial and temporal degrees of freedom. In this paper we focus on the study of high harmonic generation and demonstrate the ability to isolate the internal dynamics—decoupling the temporal information from the spatial one. By applying an in situ approach we reveal the universality of the intrinsic pump-probe measurement and establish its validity in molecular systems. When several orbitals are involved we identify the fingerprint of the transition from the single-channel case into the multiple-channel dynamics, where complex multielectron phenomena are expected to be observe

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