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中国物理学会期刊

部分空间相干光束在非Kolmogorov湍流大气中的有效曲率半径

CSTR: 32037.14.aps.61.144202

Effective radius of curvature of spatially partially coherent beams propagating through non-Kolmogorov turbulence

CSTR: 32037.14.aps.61.144202
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  • 激光在湍流大气中的传输有重要的理论研究和实际应用意义.以高斯-谢尔模型(GSM)光束作为部分空间相干光的典型例,基于非Kolmogorov谱和广义惠更斯-菲涅耳原理, 推导出GSM光束在非Kolmogorov湍流中的有效曲率半径的解析表达式. 重点研究了湍流参数(包括广义指数,内尺度l0,和外尺度L0) 和传输距离z分别对GSM光束有效曲率半径的影响.结果表明, 有效曲率半径Rx(z)随和z增加先减小然后再增大, 随L0的减小而增大(3.6 4),随l0的增加而增大.并对结果做了物理解释.

     

    The laser beam propagation through atmospheric turbulence is of importance for both theoretical study and practical applications. Taking the Gaussian Schell-model (GSM) beam as a typical example of spatially partially coherent beams,based on the non-Kolmogorov spectrum and generalized Huygens-Fresnel principle, the analytical expression for the effective radius of curvature of GSM beams propagating through non-Kolmogorov turbulence is derived. The effects of turbulence parameters (including generalized exponent parameter, inner scale l0, and outer scale L0) and propagation distance z on the effective radius of curvature of GSM beams are stressed. It is shown that the effective radius of curvature of GSM beams increases with outer scale L0 decreasing for 3.6 4 and the inner scale l0 increasing, but dose not monotonically vary with the increases of exponent parameter and propagation distance z. The results are explained physically.

     

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