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Propagation of Coherently Combined Beams in turbulent atmosphere:analytical approach

机译:混合组合光束在湍流大气中的传播:分析方法

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The performance of laser weapon system based on Coherent Beam Combining (CBC) depends on its propagation properties in atmosphere. The appropriate semi-analytical model based on partial coherent beam combination for assumed coherence coefficients between beams in CBC lattice was developed. To simulate atmospheric turbulences the Kolmogorov-Fried model of partial coherence and Hufnagel-Valley model of C~2_n dependence on atmosphere parameters were implemented. The approximated formula on CBC performance in dependence on Fried radius was proposed. The results of CBC modeling were compared to known analytical solutions of Gaussian beam propagation in turbulent atmosphere. The dependence of CBC performance on C~2_n parameter, elevation angle and range was analyzed. The general conclusion is that application of CBC has not practical sense for propagation on medium and long ranges without effective adaptive optics system.
机译:基于相干光束组合(CBC)的激光武器系统的性能取决于其大气中的传播特性。开发了基于偏相相色谱组合的适当半分析模型,用于CBC晶格中的光束之间的假定相干系数。为了模拟大气湍流,实施了局部相干性和HUFNAGEL-VALELY模型的KOLMOGOROV模型对大气参数的依赖性。提出了CBC性能的近似公式,依赖于煎线。将CBC建模的结果与湍流大气中高斯光束传播的已知分析解。分析了CBC性能对C〜2_N参数,高程角度和范围的依赖性。一般结论是,在没有有效的自适应光学系统的情况下,CBC的应用在中等和长范围内的传播并不实用。

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