Physical Review · 1969 · 257 citations · 51 references
Backward PulsesEngineeringLaser ScienceLaser-plasma InteractionLight Scattering SpectroscopyOptical PropertiesOptical SolitonPulse PowerBackward Stimulated RamanBackward PulseOptical PumpingPhotonicsPhysicsRaman-stokes PulsesNatural SciencesSpectroscopyWave ScatteringApplied PhysicsLight ScatteringUltrafast Optics
This paper describes in detail the initiation and growth of backward-traveling stimulated Raman-Stokes pulses. The radiation-transfer equations for the pulse development are derived, and a general analytic solution is given in the rate-equation approximation. Special solutions are given for a variety of pulse-initiation conditions. It is shown that in the presence of residual linear absorption, a steady-state Stokes pulse is expected, and its characteristics are described. Extensive experimental observations in C${\mathrm{S}}_{2}$ of the properties of the backward pulse and the forward emission are reported, including measurements of the pulse energy as a function of position in the cell, the pulse duration as measured by the intensity-autocorrelation technique, and the time sequence of the emission of the forward and backward pulses. Various experimental results indicate the dominant role played by self-focusing in the initiation of the backward pulse and the role of competing processes. The growth of the pulse energy is found to be consistent with the theory; a minimum pulse duration of 30 psec and a peak pulse power 20 times the instantaneous laser pump power are reported, indicating substantial depletion of the incident laser pump light.
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Self-Induced Transparency by Pulsed Coherent Light
S. L. McCall, E. L. Hahn · Physical Review Letters · 1967 · 1K citations
Photonics, Engineering, Physics +5
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Lee M. Frantz, J. S. Nodvik · Journal of Applied Physics · 1963 · 970 citations
Physics of quantum electronics
P. E. Tannenwald, Paul Kelley, B. Lax · Physics Today · 1965 · 965 citations