Cui Linyan
J Opt Soc Am A Opt Image Sci Vis. 2015 Jun 1;32(6):1199-208. doi: 10.1364/JOSAA.32.001199.
Analytic expressions for the temporal power spectra of irradiance fluctuations and angle of arrival (AOA) fluctuations are derived for optical waves propagating through weak anisotropic non-Kolmogorov atmospheric turbulence. In the derivation, the anisotropic non-Kolmogorov spectrum is adopted, which adopts the assumption of circular symmetry in the orthogonal plane throughout the path and the same degree of anisotropy along the propagation direction for all the turbulence cells. The final expressions consider simultaneously the anisotropic factor and general spectral power law values. When the anisotropic factor equals one (corresponding to the isotropic turbulence), the derived temporal power spectral models have good consistency with the known results for the isotropic turbulence. Numerical calculations show that the increased anisotropic factor alleviates the atmospheric turbulence's influence on the final expressions.
推导了光波在弱各向异性非柯尔莫哥洛夫大气湍流中传播时辐照度起伏和到达角(AOA)起伏的时间功率谱解析表达式。在推导过程中,采用了各向异性非柯尔莫哥洛夫谱,该谱假设在整个路径的正交平面内具有圆对称性,并且对于所有湍流单元,沿传播方向具有相同程度的各向异性。最终表达式同时考虑了各向异性因子和一般谱幂律值。当各向异性因子等于1时(对应于各向同性湍流),所推导的时间功率谱模型与各向同性湍流的已知结果具有良好的一致性。数值计算表明,增大的各向异性因子减轻了大气湍流对最终表达式的影响。