Publication | Open Access
Nonsequential Double Ionization with Few-Cycle Laser Pulses
85
Citations
40
References
2004
Year
PhotonicsNonsequential Double IonizationEngineeringLaser SciencePhysicsNatural SciencesApplied PhysicsLaser-plasma InteractionAtomic PhysicsPulse EnvelopeQuantum ChemistryLaser PolarizationSynchrotron RadiationAbsolute-phase MeasurementsFree Electron Laser
We investigate differential electron momentum distributions in nonsequential double ionization with linearly polarized, few-cycle pulses, using a classical model based on a laser-assisted inelastic (e(-),2e(-)) rescattering mechanism. These yields, as functions of the momentum components parallel to the laser polarization, are highly asymmetric and strongly influenced by the phase difference between the pulse envelope and its carrier oscillation, radically changing their sign around a critical phase. This behavior provides a powerful tool for absolute-phase measurements.
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