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arxiv: 1101.3993 · v1 · pith:FIUHOWCRnew · submitted 2011-01-20 · 🪐 quant-ph · physics.atom-ph

Solution of the time-dependent Dirac equation for describing multiphoton ionization of highly-charged hydrogenlike ions

classification 🪐 quant-ph physics.atom-ph
keywords ionizationapproximationdipolediraceffectequationgaugehydrogenlike
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A theoretical study of the intense-field multiphoton ionization of hydrogenlike systems is performed by solving the time-dependent Dirac equation within the dipole approximation. It is shown that the velocity-gauge results agree to the ones in length gauge only if the negative-energy states are included in the time propagation. On the other hand, for the considered laser parameters, no significant difference is found in length gauge if the negative-energy states are included or not. Within the adopted dipole approximation the main relativistic effect is the shift of the ionization potential. A simple scaling procedure is proposed to account for this effect.

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