Publication | Closed Access
Rescattering of Ultralow-Energy Electrons for Single Ionization of Ne in the Tunneling Regime
169
Citations
28
References
2003
Year
EngineeringLaser-plasma InteractionElectron OpticElectron PhysicTunneling MicroscopyElectron SpectroscopyIon BeamIon EmissionReaction MicroscopeQuantum SciencePhysicsTunneling RegimeElectron EmissionAtomic PhysicsUltralow-energy ElectronsSingle IonizationNatural SciencesSpectroscopyApplied PhysicsCondensed Matter Physics
Electron emission for single ionization of Ne by 25 fs, 1.0 PW/cm(2) laser pulses at 800 nm has been investigated in a kinematically complete experiment using a "reaction microscope." Mapping the complete final state momentum space with high resolution, a distinct local minimum is observed at P(e parallel )=0, where P(e parallel ) is the electron momentum parallel to the laser polarization. Whereas tunneling theory predicts a maximum at zero momentum, our findings are in good agreement with recent semiclassical predictions which were interpreted to be due to "recollision."
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