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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Numerical modelling of passively Q-switched intracavity Raman lasers
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Numerical modelling of passively Q-switched intracavity Raman lasers

机译:被动调Q腔内拉曼激光器的数值模拟

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摘要

Assuming intracavity photon densities to be of Gaussian spatial distributions, the space-dependent rate equations of passively Q-switched intracavity Raman lasers are deduced for the first time for the pumping beams of Gaussian and top-head spatial distributions, respectively. The new rate equations are normalized and solved numerically to investigate the influences of the normalized initial population inversion density, normalized Raman gain coefficient, saturable absorber parameter, beam size ratio of pump to fundamental laser and loss ratio of the first Stokes to fundamental laser on the pulse parameters of the first Stokes. The results of the Gaussian and top-head pumpings show similar trends despite some discrepancies. The new theories and numerical results will help design passively Q-switched intracavity Raman lasers of high performance.
机译:假设腔内光子密度为高斯空间分布,则分别针对高斯和顶头空间分布的抽运光束,首次推导了被动调Q腔内拉曼激光器的随空间变化的速率方程。对新的速率方程进行归一化和数值求解,以研究归一化的初始种群反演密度,归一化的拉曼增益系数,饱和吸收体参数,泵浦与基本激光的光束尺寸比以及第一斯托克斯与基本激光的损耗比的影响。第一个斯托克斯的脉冲参数。尽管存在一些差异,但高斯抽水和顶部抽水的结果显示出相似的趋势。新的理论和数值结果将有助于设计高性能的被动调Q腔内拉曼激光器。

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