Quantum Electronics · 2005 · 32 citations · 7 references
Optical MaterialsContinuous Stokes Self-scatteringEngineeringLaser ScienceWave OpticLaser ApplicationsHigh-power LasersShort-pulse LasersOptical PropertiesNonlinear Wave PropagationOptical SolitonNew MechanismUniaxial CrystalNanophotonicsPhotonicsPhysicsNon-linear OpticRed Frequency ShiftOptical PulseOptical PhysicApplied PhysicsWave ScatteringLight ScatteringExtraordinary Components
A new mechanism of the continuous frequency down-conversion of a pulse propagating in a uniaxial crystal under conditions of the Zakharov—Benney resonance between its ordinary and extraordinary components is proposed. Unlike stimulated Raman self-scattering, here the red frequency shift of the ordinary component saturates, achieving its maximum value at some propagation length, which is proportional to the input pulse intensity. The ordinary component generates an ultimately short single pulse of the extraordinary wave propagating in the soliton regime. It is shown that this effect can be observed only in a crystal with the positive birefringence.
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Generation of Optical Harmonics
P. A. Franken, Anna Hill, C. W. Peters et al. · Physical Review Letters · 1961 · 3.1K citations · Full text
Discovery of the soliton self-frequency shift
F. Mitschke, L. F. Mollenauer · Optics Letters · 1986 · 1.2K citations