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受激旋转拉曼散射对强紫外激光相位的影响
引用本文:陈剑华,李恪宇,李琨,张彬,王成程.受激旋转拉曼散射对强紫外激光相位的影响[J].强激光与粒子束,2006,18(7):1121-1125.
作者姓名:陈剑华  李恪宇  李琨  张彬  王成程
作者单位:1.四川大学 电子信息学院, 成都 610064; 2.中国工程物理研究院 激光聚变研究中心, 四川 绵阳 621900
基金项目:国家863计划项目资助课题
摘    要: 利用瞬态受激旋转拉曼散射(SRRS)模型及相位畸变模型,对具有空间相位畸变的强紫外激光束在空气中长程传输的SRRS效应进行了研究。详细讨论了低频和中高频空间相位畸变对SRRS阈值条件、斯托克斯光转换效率、剩余泵浦光和斯托克斯光相位的影响。研究结果表明,泵浦光的初始相位畸变对斯托克斯光相位畸变的影响较剩余泵浦光的更为明显;高频相位畸变对转换效率影响较低频相位畸变更大; SRRS效应阈值随低频相位畸变的增大而减小,随高频相位畸变的增大而增大。

关 键 词:受激旋转拉曼散射(SRRS)  相位畸变  转换效率  阈值
文章编号:1001-4322(2006)07-1121-05
收稿时间:2006-01-19
修稿时间:2006-05-18

Effect of stimulated rotational Raman scattering on phase of high-power ultraviolet laser beam
CHEN Jian-hua,LI Ke-yu,LI Kun,ZHANG Bin,WANG Cheng-cheng.Effect of stimulated rotational Raman scattering on phase of high-power ultraviolet laser beam[J].High Power Laser and Particle Beams,2006,18(7):1121-1125.
Authors:CHEN Jian-hua  LI Ke-yu  LI Kun  ZHANG Bin  WANG Cheng-cheng
Institution:1. College of Electronic Information, Sichuan University, Chengdu 610064, China;2. Research Center of Laser Fusion, CAEP, P. O. Box 919-988, Mianyang 621900, China
Abstract:Using the model of transient stimulated rotational Raman scattering(SRRS) and phase perturbation,SRRS effects on high power ultraviolet laser beams with phase noise through long air paths were studied.The effects of both low and high frequency phase perturbation on the threshold of the SRRS effects,the conversion efficiency of Stokes field and the phase of the residual pump field and the Stokes field were discussed in detail.The results show that the influence of the phase noise of the initial pump field on the Stokes field is more obvious than on the residual pump field.The variation of the conversion efficiency with the high frequency phase perturbation is larger than that with the low one.The SRRS threshold decreases with the increasing of the RMS value of low-frequency phase perturbation,and increases with the increasing of the modulation depth of the high frequency perturbation.
Keywords:Stimulated rotational Raman scattering(SRRS)  Phase perturbation  Conversion efficiency  Threshold
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