Numerical study of reverse period doubling route from chaos to stability in a two-mode intracavity doubled Nd-YAG laser
Data(s) |
14/11/2011
14/11/2011
01/03/1999
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Resumo |
We have numerically studied the behavior of a two-mode Nd-YAG laser with an intracavity KTP crystal. It is found that when the parameter, which is a measure of the relative orientations of the KTP crystal with respect to the Nd-YAG crystal, is varied continuously, the output intensity fluctuations change from chaotic to stable behavior through a sequence of reverse period doubling bifurcations. The graph of the intensity in the X-polarized mode against that in the Y-polarized mode shows a complex pattern in the chaotic regime. The Lyapunov exponent is calculated for the chaotic and periodic regions. Cochin University of Science and Technology |
Identificador |
Chaos 9, 208 (1999) http://dyuthi.cusat.ac.in/purl/2533 doi:10.1063/1.166392 |
Idioma(s) |
en |
Publicador |
American Institute of Physics |
Palavras-Chave | #chaos #bifurcation #lasers #laser cavity resonators #nonlinear dynamical systems |
Tipo |
Working Paper |