Pa. Roos et al., Intensity-dependent refractive index in a nonresonant cw Raman laser that is due to thermal heating of the Raman-active gas, J OPT SOC B, 17(5), 2000, pp. 758-763
The refractive index of H-2 is shown to decrease linearly as a function of
Stokes power and, to a much lesser extent, pump power in a nonresonant cw R
aman laser. The dominant source of the index shift is shown to be thermal a
nd significantly larger than dispersion associated with the Raman resonance
. A steady-state theoretical model based on internal heating that is due to
inelastic Raman scattering events accurately describes the observed behavi
or. With this model, frequency pulling of the Raman cavity resonance and ph
ase distortions of the intracavity Gaussian beam are predicted for various
levels of generated Stokes power. (C) 2000 Optical Society of America [S074
0-3224(00)01405-3]. OCIS codes: 140.3550, 190.5890, 190.4870, 190.5940, 190
.5650, 190.2640.