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Attosecond Control in Photoionization of Hydrogen Molecules

Physical Review LettersPublished 19 July 2011Open access
F. Kelkensberg, W. Siu, J. F. Pérez‐Torres, Felipe Morales, G. Gademann, Arnaud Rouzée
Citations141
SJR quartileQ1
SJR score2.86
SNIP2.41
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TL;DR

In experiments where hydrogen molecules were dissociatively ionized by an attosecond pulse train in the presence of a near-infrared field, the ionization probability is sensitive to the instantaneous polarization of the molecule by the IR electric field and this work demonstrates that it has probed the IR-induced electron dynamics withAttosecond pulses.

Abstract

We report experiments where hydrogen molecules were dissociatively ionized by an attosecond pulse train in the presence of a near-infrared field. Fragment ion yields from distinguishable ionization channels oscillate with a period that is half the optical cycle of the IR field. For molecules aligned parallel to the laser polarization axis, the oscillations are reproduced in two-electron quantum simulations, and can be explained in terms of an interference between ionization pathways that involve different harmonic orders and a laser-induced coupling between the 1sσ(g) and 2pσ(u) states of the molecular ion. This leads to a situation where the ionization probability is sensitive to the instantaneous polarization of the molecule by the IR electric field and demonstrates that we have probed the IR-induced electron dynamics with attosecond pulses.

Keywords

ChemistryPhysics and Astronomy