Physics of Plasmas · 2006 · 119 citations · 21 references
Short-pulse LasersPhotonicsIon-acoustic Wave PeriodStimulated Brillouin ScatteringEngineeringPhysicsStrong Coupling RegimeOptical PropertiesLight FrequencyNonlinear Wave PropagationApplied PhysicsLaser-plasma InteractionRelativistic Laser-matter InteractionPlasma PhotonicsBrillouin ScatteringOptoelectronicsOptical AmplifierKinetic Nonlinearities
Short light pulse amplification using the stimulated Brillouin backscattering mechanism is considered. The novel feature is that the interaction process takes place in the strongly coupled regime and therefore the pulse compression is not limited by the ion-acoustic wave period. The mechanism is very efficient due to the large ratio of light frequency to the characteristic ion-acoustic wave frequency. Although large-amplitude ion-acoustic waves are generated and subsequent wave breaking takes place, the fluid and kinetic nonlinearities do not intervene with the amplification itself.
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Compression of amplified chirped optical pulses
D. Strickland, G. Mourou · Optics Communications · 1985 · 3.8K citations
Compression of amplified chirped optical pulses
D. Strickland, G. Mourou · Optics Communications · 1985 · 1.1K citations
Fast Compression of Laser Beams to Highly Overcritical Powers
V. M. Malkin, G. Shvets, N. J. Fisch · Physical Review Letters · 1999 · 415 citations
Intense Light Bursts in the Stimulated Raman Effect
Martin Maier, W. Kaiser, J. A. Giordmaine · Physical Review Letters · 1966 · 307 citations