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- W2465737690 abstract "Abstract By using classical ensemble method, we investigate the double ionization of CS 2 molecule in linearly, the bichromatic counterrotating circularly polarized laser fields and the combination of bichromatic counterrotating circularly polarized laser fields and static field, respectively. The numerical results show that the ionization probability in the bichromatic counterrotating circularly polarized laser fields is about 2 order magnitude higher than that in linearly polarized laser field. When a static field is added, the ionization probability is the largest. Besides, the “knee” structure occurs at about 0.05 PW/cm 2 in linearly polarized laser field; whereas “knee” structure is disappeared in the bichromatic counterrotating circularly polarized laser fields and combined laser field. The corresponding momentum distribution of CS 2 molecule presents a “finger-like” structure at about 0.05 PW/cm 2 in linearly polarized field. By analysing the energy distributions of double-ionized electrons versus time and corresponding trajectories, we find that, for linearly polarized case non-sequential double ionization (NSDI) is predominant at about 0.05 PW/cm 2 , for bichromatic counterrotating circularly polarized laser fields, one electron ionizes after another which indicate sequential ionization process (SDI). When the static field is added, the two electrons undergoes a long pre-ionization process first and then ionizes one after another, and the pre-ionization process lasts longer than other two cases." @default.
- W2465737690 created "2016-07-22" @default.
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- W2465737690 date "2016-12-01" @default.
- W2465737690 modified "2023-10-17" @default.
- W2465737690 title "Exploration of strong-field double ionization of CS 2 molecule in bichromatic counterrotating circularly polarized laser fields" @default.
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- W2465737690 doi "https://doi.org/10.1016/j.optcom.2016.06.041" @default.
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