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Coulomb repulsion and quantum-classical correspondence in laser-induced nonsequential double ionization.

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<mark>Journal publication date</mark>24/02/2004
<mark>Journal</mark>Physical review a
Issue number2
Volume69
Pages (from-to)021402
Publication StatusPublished
<mark>Original language</mark>English

Abstract

The influence of electron-electron Coulomb repulsion on nonsequential double ionization of rare-gas atoms is investigated. Several variants of the quantum-mechanical transition amplitude are evaluated that differ by the form of the inelastic electron-ion rescattering and whether or not Coulomb repulsion between the two electrons in the final state is included. For high laser intensity, an entirely classical model is formulated that simulates the rescattering scenario.