强激光与粒子束, 2011, 23 (8): 2044, 网络出版: 2011-09-20  

相位片湍流仿真装置中的激光漂移效应

Laser wander effect in turbulence simulation system with random phase plate
甘新基 1,2,3,*郭劲 1,3徐抒岩 1
作者单位
1 中国科学院 长春光学精密机械与物理研究所, 长春 130033
2 北华大学 机械工程学院, 吉林 吉林 132013
3 激光与物质相互作用国家重点实验室, 长春 130033
摘要
为了在内场中开展激光传输特性实验研究,设计了一种基于Kolmogorov谱的随机相位片的大气湍流物理仿真系统,并用该大气湍流模拟仿真系统对激光漂移效应进行了研究。采用光束质量分析仪对模拟传输的光斑图像进行采集和分析,通过比较实际漂移方差与理论漂移方差,验证了该湍流仿真系统模拟和评价光束在仿真传输中的性能。实验分析表明,基于湍流相位片物理仿真系统模拟的光束漂移方差与理论曲线基本一致。
Abstract
The laser propagation process can be influenced by atmospheric turbulence. The turbulence could bring on the degradation of the laser beam correlation, induce beam wandering and spreading. However, the experimental data obtained from the outer field research about laser propagation in turbulence is always influenced inevitably by many factors. A turbulence simulating device in inner field for studying the process of laser propagation in atmospheric turbulence could avoid the disturbance of these factors for studying. A physical turbulence simulation system using random phase plates based on Kolmogorov spectrum was designed to complete a spot wander experiment of laser propagation. The formula of instantaneous wander variance and beam expansion variance are given, which could be used to determine long-term beam drift variance. In the experiment, a beam quality analyzer was used to gather and analyze the centroid data and diameter data of spot images, by which the long-term beam wander variance under interference of turbulence simulation could be work out.The experiment shows that laser spot wander angle variance of different simulation coherence length corresponds with the theoretical curve. The result shows that the turbulence simulation system is appropriate for the research of laser wandering effect in inner field.
参考文献

[1] 苏毅,万敏. 高能激光系统[M]. 北京:国防工业出版社,2004:135-143. (Su Yi, Wan Min. Highpower laser system. Beijing: National Defense Industry Press, 2004:135-143)

[2] 钱仙妹,朱文越,饶瑞中. 漂移对聚焦高斯光束闪烁影响的数值模拟[J].强激光与粒子束, 2007,19(2):193-196. (Qian Xianmei, Zhu Wenyue, Rao Ruizhong. Simulation of effects of beam wander on scintillation index of a focused Gaussian-beam.High Power Laser and Particle Beams,2007,19(2):193-196)

[3] Gordon L.Wavefront correction and production of Zernike modes with a liquid crystal spatial light modulator[J].Appl Opt,1997,3(6):1517-1524.

[4] Brooks M R,Goda M E.Atmospheric simulation using a liquid crystal wavefront controlling device[C]//Proc of SPIE.2004,5553:258-268.

[5] Ellenbroek R, Verhaegen M, Doelman N, et al. Distributed control in adaptive optics:Deformable mirror and turbulence modeling[C]//Proc of SPIE,2006,6272:102-112.

[6] Mantravadi S V,Rhoadarmer T A,Glas R S. Simple laboratory system for generating well-controlled atmospheric-like turbulence[J]Opt Eng,2004,5553:290-300.

[7] Ebstein S M. Pseudo random phase plates[C] //Proc of SPIE.2002,4493: 150-155.

[8] Gan X J, Guo J, Fu Y Y. The simulating turbulence method of laser propagation in the inner field[J]. Journal of Physics,2006,48:907-910.

[9] 孙再龙,译. 红外与光电系统手册:第二卷[M]. 天津:航天工业总公司8538所,2001:133-134(Sun Zailong. The infrared and electro-optical system handbook(Vol.2).Tianjin: 8538 Institute of Aerospace Industry Corp,2001:133-134)

甘新基, 郭劲, 徐抒岩. 相位片湍流仿真装置中的激光漂移效应[J]. 强激光与粒子束, 2011, 23(8): 2044. Gan Xinji, Guo Jin, Xu Shuyan. Laser wander effect in turbulence simulation system with random phase plate[J]. High Power Laser and Particle Beams, 2011, 23(8): 2044.

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