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Absorption of Short Laser Pulses on Solid Targets in the Ultrarelativistic Regime
206
Citations
30
References
2008
Year
Total AbsorptionEngineeringLaser ScienceSolid TargetsLaser-plasma InteractionLaser AblationShort-pulse LasersUltrarelativistic RegimeOptical PropertiesUltra-short LasersUltrafast LasersPhotonicsPhysicsRelativistic Laser-matter InteractionEnhanced AbsorptionSynchrotron RadiationShort Laser PulsesNatural SciencesSpectroscopyLaser-induced BreakdownApplied Physics
We report the first direct measurements of total absorption of short laser pulses on solid targets in the ultrarelativistic regime. The data show an enhanced absorption at intensities above 10(20) W/cm(2), reaching 60% for near-normal incidence and 80%-90% for 45 degrees incidence. Two-dimensional particle-in-cell simulations demonstrate that such high absorption is consistent with both interaction with preplasma and hole boring by the intense laser pulse. A large redshift in the second harmonic indicates a surface recession velocity of 0.035c.
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