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Polarization properties of polarized and partially coherent Electromagnetic Gaussian-Schell model pulse beams on slant path in turbulent atmosphere

机译:湍流大气中倾斜路径上的偏振和部分相干电磁高斯-谢尔模型脉冲光束的偏振特性

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This paper is based on the unified theory of coherence and polarization of stochastic electromagnetic beams and the extended Huygens-Fresnel principle, combined with the quadratic approximation of Rytov's phase structure function and the generalized Stokes parameters. We have derived the novel expressions for the cross-spectral density matrix elements and the degree of cross-polarization of a class of elliptically polarized spatially and spectrally partially coherent Electromagnetic Gaussian-Schell model pulse (EGSMP) beams propagating through atmospheric turbulence along a slant path. Additionally, we calculate and analyze the effects of the turbulent intensity, the initial pulse duration, waist width of the beam, the spatial coherence length and temporal coherence length et al. on the polarization properties of fully polarized and partially coherent EGSMP beams. Finally, a comparison of the impact of those factors on the partially polarization beams is made. The results show that the influences of the turbulent intensity, the initial pulse duration, waist width of the beam, the spatial coherence length and temporal coherence length et al. on the polarization properties of fully polarized and partially coherent EGSMP beams are larger. While the effects of those parameters on the partially polarization and partially coherent EGSMP beams are smaller. It is noted that the results of this paper have established sound theoretical basis on the topic of improving performance of the laser system propagating through the atmospheric turbulence.
机译:本文基于随机电磁束的相干和极化的统一理论和扩展的惠更斯-菲涅耳原理,结合Rytov的相结构函数和广义Stokes参数的二次逼近。我们推导了关于一类椭圆极化的空间和频谱部分相干的电磁高斯-谢尔模型脉冲(EGSMP)光束的交叉谱密度矩阵元素和交叉偏振度的新颖表达式,该光束通过大气湍流沿倾斜路径传播。 。另外,我们计算和分析了湍流强度,初始脉冲持续时间,光束的束腰宽度,空间相干长度和时间相干长度等的影响。全偏振和部分相干EGSMP光束的偏振特性最后,比较了这些因素对部分偏振光束的影响。结果表明,湍流强度,初始脉冲持续时间,光束的束腰宽度,空间相干长度和时间相干长度的影响等。全偏振和部分相干EGSMP光束的偏振特性较大。这些参数对部分偏振和部分相干EGSMP光束的影响较小。值得注意的是,本文的研究结果为改善通过大气湍流传播的激光系统的性能奠定了良好的理论基础。

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