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Laser-assisted collision effect on nonsequential double ionization of helium in a few-cycle laser pulse

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arxiv 0901.2607 v1 pith:BIA65OMO submitted 2009-01-17 physics.atom-ph physics.optics

Laser-assisted collision effect on nonsequential double ionization of helium in a few-cycle laser pulse

classification physics.atom-ph physics.optics
keywords ionizationlasernsdipulseintensitycollisiondifferentdistribution
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Nonsequential double ionization (NSDI) of helium in an intense few-cycle laser pulse is investigated by applying the three-dimensional semi-classical re-scattering method. It is found that the momentum distribution of He$^{2+}$ shows a single-double-single peak structure as the pulse intensity increases. According to the different mechanisms dominating the NSDI process, the laser intensity can be classified into three regimes where the momentum distribution of He$^{2+}$ exhibits different characteristics. In the relatively high intensity regime, an NSDI mechanism named the "laser-assisted collision ionization" is found to be dominating the NSDI process and causing the single peak structure. This result can shed light on the study of non-sequential ionization of a highly charged ion in a relatively intense laser pulse.

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