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Influences of thermal deformation of cavity mirrors induced by high energy DF laser to beam quality under the simulated real physical circumstances

机译:模拟真实环境下高能DF激光器引起的腔镜热变形对光束质量的影响

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The positive-branch confocal unstable resonator with inhomogeneous gain medium was studied for the normal used high energy DF laser system. The fast changing process of the resonator's eigenmodes was coupled with the slow changing process of the thermal deformation of cavity mirrors. Influences of the thermal deformation of cavity mirrors to the outcoupled beam quality and transmission loss of high frequency components of high energy laser were computed. The simulations are done through programs compiled by MATLAB and GLAD software and the method of combination of finite elements and Fox-li iteration algorithm was used. Effects of thermal distortion, misaligned of cavity mirrors and inhomogeneous distribution of gain medium were introduced to simulate the real physical circumstances of laser cavity. The wavefront distribution and beam quality (including RMS of wavefront, power in the bucket, Strehl ratio, diffraction limit β, position of the beam spot center, spot size and intensity distribution in far-field ) of the distorted outcoupled beam were studied. The conclusions of the simulation agree with the experimental results. This work would supply references of wavefront correction range to the adaptive optics system of interior alleyway.
机译:针对正常使用的高能DF激光系统,研究了具有非均匀增益介质的正分支共焦不稳定谐振器。谐振器本征模的快速变化过程与腔镜热变形的缓慢变化过程相结合。计算了腔镜的热变形对高能激光器高频光束的出射光束质量和传输损耗的影响。仿真是通过MATLAB和GLAD软件编译的程序完成的,并采用了有限元与Fox-li迭代算法相结合的方法。为了模拟激光腔的真实物理环境,引入了热畸变,腔镜未对准以及增益介质分布不均匀的影响。研究了畸变的外耦合光束的波阵面分布和光束质量(包括波阵面均方根,桶内功率,斯特列尔比,衍射极限β,光束光斑中心位置,光斑大小和远场强度分布)。仿真结论与实验结果吻合。这项工作将为室内小巷的自适应光学系统提供波前校正范围的参考。

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