Publication | Open Access
Second-order autocorrelation of XUV FEL pulses via time resolved two-photon single ionization of He
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Citations
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References
2011
Year
EngineeringLaser-plasma InteractionCoherence TimeSecond-order Autocorrelation SpectraLaser Plasma PhysicHigh-power LasersTwo-photon Single IonizationSecond-order AutocorrelationFree Electron LaserPhotonicsPhysicsRelativistic Laser-matter InteractionAtomic PhysicsX-ray Free-electron LaserSynchrotron RadiationAutocorrelation TraceXuv FelNatural SciencesSpectroscopyApplied Physics
Second-order autocorrelation spectra of XUV free-electron laser pulses from the Spring-8 Compact SASE Source (SCSS) have been recorded by time and momentum resolved detection of two-photon single ionization of He at 20.45 eV using a split-mirror delay-stage in combination with high-resolution recoil-ion momentum spectroscopy (COLTRIMS). From the autocorrelation trace we extract a coherence time of 8 ± 2 fs and a mean pulse duration of 28 ± 5 fs, much shorter than estimations based on electron bunch-length measurements. Simulations within the partial coherence model [Opt. Lett. 35, 3441 (2010)] are in agreement with experiment if a pulse-front tilt across the FEL beam diameter is taken into account that leads to a temporal shift of about 6 fs between both pulse replicas.
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