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- W2044146788 abstract "Exact (non-Born−Oppenheimer) numerical solutions of the time-dependent Schrödinger equation for a 1-D model of the one-electron isotopomer systems H2+, HD+, and HT+ have been obtained in a two-color laser control scheme, ω + 2ω, of dissociation and dissociative ionization in the high-intensity (I ≥ 1013 W/cm2), nonlinear, nonperturbative regime of laser−molecule interaction. Calculations have been performed at the fundamental wavelengths λCO2 = 10.3 μm and λYAG = 1.064 μm in combination with their second harmonics in order to study the effect of laser frequency and permanent dipole moments on the electron−nuclear dynamics in the presence of periodic asymmetric fields. It is found that asymmetries occur in both the ionization and the dissociation. The phase sensitivity is shown to be quite different in the two wavelength regimes. Adiabatic and nonadiabatic quasistatic models of the dissociation and ionization processes are shown to offer simple interpretation of the calculated asymmetries in terms of tunneling ionization and barrier suppression dissociation." @default.
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- W2044146788 date "2003-04-01" @default.
- W2044146788 modified "2023-10-18" @default.
- W2044146788 title "Isotopic Effects in the Laser Control of Dissociative Ionization at High Intensities: Role of Permanent Dipole Moments<sup>†</sup>" @default.
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- W2044146788 doi "https://doi.org/10.1021/jp022044v" @default.
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