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- W39771632 abstract "Present laser technology allows one to subject atoms and molecules to ever increasing radiation intensities so that eventually perturbation theory breaks down, i.e., renormalization of the electronic spectrum by the external field must be taken into account. Highly nonlinear effects such as above threshold ionization (ATI) readily occur in the case of atoms [1] and recently in molecules also [2–3]. Laser induced avoided crossings of molecular electronic potential curves is another result of such nonperturbative effects [2–6]. Clearly nonperturbative radiative effects predominate whenever laser field intensities approach atomic electric fields in an atom. The atomic unit (a.u.) of the electric field e2/a 0 2 ; corresponds to a field intensity of 6 x 1016 W/cm2 [7]. Such intensities are currently being attained, so that perturbative approaches to atom-laser interactions are no longer adequate." @default.
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- W39771632 date "1992-01-01" @default.
- W39771632 modified "2023-10-16" @default.
- W39771632 title "Application of the Finite Element Method to the 3-D Hydrogen Atom in an Intense Laser Field" @default.
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- W39771632 doi "https://doi.org/10.1007/978-1-4615-3364-1_4" @default.
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