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高功率激光装置主放大系统结构表面粗糙对自激振荡的影响

Influence of structural surface roughness on self-excited oscillation of main amplification system of high power laser device
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摘要 对于采用离轴多程放大技术的高功率激光装置,抑制其自激振荡的技术具有重大研究价值。针对工程中发现的主放大系统小孔板附近结构表面比较光亮,当腔内放大器工作时,在增益足够条件下,光亮结构面和腔镜间形成谐振腔而产生自激振荡,烧蚀腔内器件的问题,基于蒙特卡洛方法模拟结构表面,依据几何光学原理推导了激光光束在结构表面反射模型,采用该模型代入工程中光路部分参数计算了主放大系统结构表面粗糙处理工艺和反射进入放大器内份额的关系,并将该表面处理工艺应用于工程中,通过增大结构表面粗糙度,使形成的谐振腔损耗大于增益,为抑制高功率激光装置主放大系统自激振荡提供了依据。 For high-power laser devices using off-axis multi-pass amplification technology,the technology to suppress self-oscillation is of great research value.It is found in engineering practice that the surface of the structure near the aperture of the main amplification system is relatively bright,thus when the amplifier is working,with sufficient gain,a resonant cavity is formed between the bright structural surface and the cavity mirror to generate selfoscillation and ablation.In this paper,this problem of the device is studied by using Monte Carlo method to simulate the surface of the structure.According to the principle of geometric optics,the reflection model of the laser beam on the surface of the structure is derived.The surface of the main amplification system is simulated using this model,and the parameters of the optical path are used to calculate the relationship between surface roughness and residual reflected light reflected into the amplifier.The surface treatment process is applied to our project.By increasing the surface roughness of the structure,the resonant cavity loss is greater than the gain,which provides a basis for suppressing the self-oscillation of the main amplification system of high-power laser devices.
作者 廖予祯 王德恩 邓学伟 张鑫 杨英 郭雨源 郑胜亨 袁强 胡东霞 Liao Yuzhen;Wang Deen;Deng Xuewei;Zhang Xin;Yang Ying;Guo Yuyuan;Zheng Shengheng;Yuan Qiang;Hu Dongxia(Research Center of Laser Fusion,CAEP,P.O.Box 919-988,Mianyang 621900,China)
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2020年第1期113-120,共8页 High Power Laser and Particle Beams
基金 国家自然科学基金项目(61775199) 中国工程物理研究院“双百人才”基金项目
关键词 主放大系统 自激振荡 结构表面粗糙 漫反射模型 main amplification system self-oscillation structural surface roughness diffuse reflection model
作者简介 廖予祯(1995-),女,学士,研究实习员,从事高功率固体激光技术研究,lyzfreee@163.com;通信作者:王德恩(1986-),男,硕士,助理研究员,从事高功率固体激光光束质量控制研究,sduwde@126.com。
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  • 1W克希奈尔.固体激光工程[M].北京:科学出版社,1983.379.
  • 2[1]Hendrix J L, Schweyen J, Rowe J, et al. Ghost analysis visualization techniques for complex systems examples from the NIF final optics assembly [A]. SPIE[C], 1998,3492:306.
  • 3[2]Benard H, Mathieu G, Ferriou N, et al. Simulation and analysis of ghost images for the magajoule laser[A]. SPIE[C], 1998,3492:321.
  • 4[3]Dunn M H. Use of flow graphs of analysis of optical cavities[J]. Applied Optics, 1971,10(6):1393~1397.
  • 5LIU Hong-jie,ZHU Qi-hua,JIANG Dong-bin.Restraint of the self-excitation oscillation in the two-pass amplification[J].High power laser and partical beams,2004,12(sl),179 -181.(in Chinese)
  • 6Simmons W W.Argus laser system:performance summary[J].Appl.Opt.,1978,17:999-1005.
  • 7Hunt J T.Present and future performance of the Nova laser system[J].Optic Eng.,1989,28 (40):461 -468.
  • 8McMahon J M.The upgraded phebus II laser system[J].IEEE J Quantum Electron,1981,17 (9):461 -468.
  • 9McMahon J M.The upgraded pharos Ⅱ laser system[].IEEE Journal of Quantum Electronics.1981
  • 10Hunt J T.Present and future performance of the Nova laser system[].Optical Engineering.1989

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