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Atmospheric turbulence MTF for optical waves' propagation through anisotropic non-Kolmogorov atmospheric turbulence

机译:大气湍流MTF,用于通过非Kolmogorov各向异性大气湍流传播光波

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摘要

The conventional investigations for atmospheric turbulence have assumed that the refractive-index fluctuations of atmosphere are statistically homogeneous and isotropic. Developments of experimental and theoretical investigations have shown that the isotropic turbulence generally exists near the ground, and in the free atmosphere layer above the ground the anisotropic turbulence appears. Hence, deviations from the previously published results obtained with the isotropic turbulence assumption are possible. In this study, new analytic expressions for the anisotropic atmospheric turbulence modulation transfer function (MTF) are derived for optical plane and spherical waves propagating through anisotropic non- Kolmogorov turbulence. They consider both an anisotropic coefficient and a general spectral power law value in the range 3 to 4. When the anisotropic coefficient equals one (corresponding to the isotropic turbulence), the new results obtained in this work can reduce correctly to the previously published analytic expressions under isotropic non-Kolmogorov turbulence. The derived MTF models physically describe the turbulence anisotropic property of high atmospheric layer. Numerical calculations show that with the increase of anisotropic factor which is proportional to the atmospheric layer altitude, the atmospheric turbulence produces less effect on the imaging system.
机译:常规的大气湍流研究假设大气的折射率波动在统计上是均匀且各向同性的。实验和理论研究的发展表明,各向同性湍流通常存在于地面附近,并且在地面上方的自由大气层中会出现各向异性的湍流。因此,可能会偏离与各向同性湍流假设所获得的先前发布的结果。在这项研究中,通过各向异性非Kolmogorov湍流传播的光学平面波和球面波,得出了各向异性大气湍流调制传递函数(MTF)的新解析表达式。他们既考虑了各向异性系数,又考虑了3至4范围内的一般谱功率定律值。当各向异性系数等于1(与各向同性湍流相对应)时,这项工作中获得的新结果可以正确地简化为先前发表的解析表达式在各向同性非Kolmogorov湍流下。导出的MTF模型从物理上描述了高大气层的湍流各向异性。数值计算表明,随着各向异性因子的增加,各向异性因子与大气层高度成正比,大气湍流对成像系统的影响较小。

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