首页 | 本学科首页   官方微博 | 高级检索  
     检索      

光路交叠对强光传输的影响
引用本文:王世庆,柳建,张翔,金钢.光路交叠对强光传输的影响[J].光子学报,2008,37(1):173-176.
作者姓名:王世庆  柳建  张翔  金钢
作者单位:1. 成都理工大学,工程技术学院,四川,乐山,614007
2. 中国科学院光电技术研究所,成都,610209
基金项目:国防科技应用基础研究基金
摘    要:实验中观察到高能激光束通过光程总长、气体环境等条件相同,但局部布置不同的光路后,其接收光斑峰值功率密度、波前离焦和高阶像差等光束参量有差异.对此问题,选择Z型和X型两种总长度相等的光路在相同气体环境下进行了数值研究.结果表明,产生上述差异的主要原因是由于两种光路中光束交叠区域大小和形状不同引起的气体热效应产生的附加相位有所不同.而且对不同特性的光束,该差异也不同.对高斯光束,两种光路中气体热效应对光束影响的差异较小;对平顶高斯空心光束,两种光路中气体热效应对光束影响的差异较明显.因此,为抑制气体热效应对光束的影响,在考虑其它因素的同时,应尽可能减小光路中的光束交叠区域.

关 键 词:光传输  气体热效应  气动光学  标量波动方程  简化N-S方程
文章编号:1004-4213(2008)01-0173-4
收稿时间:2006-06-19
修稿时间:2006年6月19日

Thermal Effects on Laser Beam Due to Superposition of Beam Path
WANG Shi-qing,LIU Jian,ZHANG Xiang,JIN Gang.Thermal Effects on Laser Beam Due to Superposition of Beam Path[J].Acta Photonica Sinica,2008,37(1):173-176.
Authors:WANG Shi-qing  LIU Jian  ZHANG Xiang  JIN Gang
Abstract:It was seen in experiment that when high power density laser propagating through different path with same total length and gas environment but different position of reflecting mirror, some parameters such as the peak energy density,wave front defocus and high-order aberration were different. To research this phenomenon,a numerical study of laser beam propagating through a X-shape and a Z-shape path in air with same total length was carried out. Results show that the difference referred above caused by the different summations and shapes of superposed areas on beam path. The difference mainly behave as the decreasing of the peak energy density and the increasing of the wave front defocus and high-order aberration in the X-like beam path in which the superposed areas is bigger. It was greater to super-Gaussian beam than to Gaussian beam. In order to depress the gas thermal effects on laser propagation,it should be considered to minimize the superposed areas in belm path
Keywords:Beam propagation  Thermal effect  Aero-optics  Scalar Diffraction  Predigested N-S equations
本文献已被 维普 万方数据 等数据库收录!
点击此处可从《光子学报》浏览原始摘要信息
点击此处可从《光子学报》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号