Cite this article:
Chen Li-mei, Fu Hai-xiang, Cao Li, Wu Da-jin, Qiu Jun-lin. STATIONARY PROBABILITY DISTRIBUTION FOR COLORED-LOSS-NOISE MODEL OF A SINGLE-MODE DYE LASERJ. Chin. Phys. B, 1999, 8(3): 180-184.
| Chen Li-mei, Fu Hai-xiang, Cao Li, Wu Da-jin, Qiu Jun-lin. STATIONARY PROBABILITY DISTRIBUTION FOR COLORED-LOSS-NOISE MODEL OF A SINGLE-MODE DYE LASERJ. Chin. Phys. B, 1999, 8(3): 180-184. |
STATIONARY PROBABILITY DISTRIBUTION FOR COLORED-LOSS-NOISE MODEL OF A SINGLE-MODE DYE LASER
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Abstract
We apply the interpolation procedure to calculate the stationary probability distribution of the colored-loss-noise model of a single-mode dye laser operating above the threshold with correlation time \tau covering a very wide range. By stochastic Runge-Kutta algorithm, we also carry out numerical simulations of steady-state properties. Comparing the results of the interpolation procedure and the unified colored-noise approximation with simulation results, we find that the agreement between the results of the interpolation procedure and the simulation results is much better than that of the unified colored-noise approximation when correlation time \tau covers a range from moderate to large. We conclude that the interpolation procedure really improve the accuracy of predictions for this system. -
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