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Experimental Evidence of Short Light Pulse Amplification Using Strong-Coupling Stimulated Brillouin Scattering in the Pump Depletion Regime
99
Citations
18
References
2010
Year
EngineeringLaser ScienceAmplification SchemeLaser-plasma InteractionHigh-power LasersOptical AmplifierShort-pulse LasersRelative Amplification FactorsOptical AmplificationSeed PulseOptical PropertiesOptical SolitonPulse PowerOptical PumpingPhotonicsPhysicsBrillouin ScatteringExperimental EvidenceApplied PhysicsPump Depletion Regime
The energy transfer from a long (3.5 ps) pump pulse to a short (400 fs) seed pulse due to stimulated Brillouin backscattering in the strong-coupling regime is investigated. The two pulses, both at the same wavelength of 1.057 microm are quasicounterpropagating in a preformed underdense plasma. Relative amplification factors for the seed pulse of up to 32 are obtained. The maximum obtained amplified energy is 60 mJ. Simulations are in agreement with the experimental results and suggest paths for further improvement of the amplification scheme.
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