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Propagation of twisted EM Gaussian Schell-model array beams in anisotropic turbulence

机译:扭曲的EM高斯Schell模型阵列射线在各向异性湍流中的传播

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The behavior of the twisted electomagnetic (EM) Gaussian Schell-model array beams in anisotropic random turbulence is investigated. An example illustrates that a twisted EM source can produce lattice-like patterns in degree of polarization with rotation or not, which depends on the setting of the initial twist phase. One also finds that the anisotropy of the medium leads to an anisotropic beam spreading, and we can effectively limit such turbulence-induced effects by optimizing the initial twist and source correlation widths. Moreover, after transmitting through the turbulence for sufficiently long distances, the intensity and coherence are mainly affected by turbulence statistics; however, for the case of polarization, the initial twist plays a dominant role in determining its distribution profile. (C) 2020 Optical Society of America
机译:研究了各向异性随机湍流中的扭曲镀锌(EM)高斯Schell模型阵列梁的行为。 一个例子示出了扭曲的EM源可以在旋转的偏振程度下产生格子状图案,这取决于初始扭曲阶段的设置。 人们还发现介质的各向异性导致各向异性光束扩展,并且我们可以通过优化初始扭曲和源相关宽度来有效地限制这种湍流诱导的效果。 此外,在通过湍流传递足够长的距离之后,强度和相干性主要受湍流统计的影响; 然而,对于极化的情况,初始扭曲在确定其分布型材方面发挥着主导作用。 (c)2020美国光学学会

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    《Applied optics》 |2020年第11期|共8页
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