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Spatial Optical Parametric Coupling of Picosecond Light Pulses and Transverse Relaxation Effect in Resonant Media

Journal of the Physical Society of Japan · 1979 · Vol. 47(5) · pp. 1620–1626
Tatsuo YajimaYoichi Taira

Abstract

The dynamical properties of a third-order nonlinear optical process, in which two incident light pulses with wave vectors k 1 and k 2 generate a light wave with 2 k 2 - k 1 in resonant media, are discussed with particular attention to the effect of transverse relaxation time T 2 . It is shown that the correlation trace (output light energy vs incident pulse separation) for this process provides a general means of obtaining information on ultrashort T 2 for both the homogeneously and inhomogeneously broadened transitions, and for both t p (pulse width)< T 2 and t p > T 2 . An experimental demonstration for t p > T 2 is given by using a dye molecule and a picosecond light source.

Spectroscopy and Quantum Chemical StudiesLaser-Matter Interactions and ApplicationsPhotochemistry and Electron Transfer StudiesPicosecondPhysicsOpticsTransverse planeCoupling (piping)Pulse (music)Relaxation (psychology)Optical parametric amplifierEnergy (signal processing)Atomic physics
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Spatial Optical Parametric Coupling of Picosecond Light Pulses and Transverse Relaxation Effect in Resonant Media · Scinovex