Spatially-temporal dynamics of a passively Q-switched Raman-active solid-state oscillator
Abstract
The spatially-temporal model of an all-solid-state passively Q-switched oscillator with an active medium providing the stimulated Raman scattering is presented. The model does not presume a Gaussian shape of the cylindrically symmetric modes at both fundamental and Stokes wavelengths. It is found, that the highly-nontrivial spatially-temporal dynamics can be regularized by the optimal choice of the oscillator parameters, viz. initial transmission of a saturable absorber, curvature of a spherical mirror, and output mirror transmission at the fundamental and Stokes wavelengths. As a result, the pulse can be substantially temporally squeezed and spatially broadened at both fundamental and Stokes wavelengths.
Keywords
Cite
@article{arxiv.0909.3730,
title = {Spatially-temporal dynamics of a passively Q-switched Raman-active solid-state oscillator},
author = {V. L. Kalashnikov and A. M. Malyarevich and K. V. Yumashev},
journal= {arXiv preprint arXiv:0909.3730},
year = {2010}
}
Comments
13 pages, 8 figures, XVI Annual Seminar on Nonlinear Phenomena in Complex Systems (May 19-22, 2009, Minsk, Belarus)