Multiple electron trapping in the fragmentation of strongly driven molecules
arXiv:1206.6746 · doi:10.1088/1367-2630/14/11/115010
Abstract
We present a theoretical quasiclassical study of the formation, during Coulomb explosion, of two highly excited neutral H atoms (double H) of strongly driven H. In this process, after the laser field is turned off each electron occupies a Rydberg state of an H atom. We show that two-electron effects are important in order to correctly account for double H formation. We find that the route to forming two H atoms is similar to pathway B that was identified in Phys. Rev. A {\bf 85} 011402 (R) as one of the two routes leading to single H formation. However, instead of one ionization step being "frustrated" as is the case for pathway B, both ionization steps are "frustrated" in double H formation. Moreover, we compute the screened nuclear charge that drives the explosion of the nuclei during double H formation.
4 pages, 6 figures
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