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- W1992753206 abstract "We present molecular above-threshold ionization (MATI) spectra generated by ultrashort intense linearly and circularly polarized laser pulses from nonperturbative numerical solutions of the corresponding time-dependent Schrodinger equation in the molecular-ion ${{mathrm{H}}_{2}}^{+}$. It is found that high-order MATI spectra with maximum kinetic energy $32{U}_{p}$, where ${U}_{p}={I}_{0}/4{m}_{e}{ensuremath{omega}}_{0}^{2}$ is the ponderomotive energy at intensity ${I}_{0}$ and frequency ${ensuremath{omega}}_{0}$, can be obtained in ${{mathrm{H}}_{2}}^{+}$ at great internuclear distances $R$ for both linear and circular polarizations. Quasiclassical laser-induced collision models confirm that such high-order MATIs mainly result from a collision with neighboring ions of the ionized electron. Interference patterns in the high-order MATI spectra are critically sensitive to both the internuclear distance $R$ of the molecules and the polarizations of the driving laser pulses. Moreover, with few-cycle laser pulses, the carrier-envelope phase sensitivity of MATI angular distributions is also investigated for varying internuclear distances $R$. At critical internuclear distances for charge-resonance-enhanced ionization, we also find that enhanced interference patterns occur." @default.
- W1992753206 created "2016-06-24" @default.
- W1992753206 creator A5007962222 @default.
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- W1992753206 date "2011-07-28" @default.
- W1992753206 modified "2023-09-27" @default.
- W1992753206 title "Angle-dependent molecular above-threshold ionization with ultrashort intense linearly and circularly polarized laser pulses" @default.
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- W1992753206 doi "https://doi.org/10.1103/physreva.84.013426" @default.
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