首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Effects of atmospheric turbulence on the polarization of apertured electromagnetic Gaussian Schell-model beams
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Effects of atmospheric turbulence on the polarization of apertured electromagnetic Gaussian Schell-model beams

机译:大气湍流对带孔电磁高斯谢尔模型光束偏振的影响

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摘要

The effects of atmospheric turbulence on the polarization of apertured electromagnetic Gaussian Schell-model (EGSM) beams are studied. The closed-form expression for the degree of polarization of apertured EGSM beams propagating through atmospheric turbulence is derived. It is shown that on propagation over sufficient long distances the degree of polarization of apertured EGSM beams with different values of beam truncation parameter and beam coherence parameter tends to the same value at the source plane and becomes uniform due to turbulence, which is quite different from the behavior in free space. The smaller the beam truncation parameter is, the less the degree of polarization is affected by turbulence. In particular, the degree of polarization of apertured EGSM beams is less sensitive to the effects of turbulence than that of unapertured EGSM beams
机译:研究了大气湍流对有孔电磁高斯谢尔模型(EGSM)光束极化的影响。推导了通过大气湍流传播的有孔EGSM光束的偏振度的封闭形式。结果表明,在足够长的距离上传播时,具有不同的光束截断参数和相干参数值的有孔EGSM光束的偏振度在源平面处趋于相同值,并且由于湍流而变得均匀,这与自由空间中的行为。光束截断参数越小,湍流对偏振度的影响越小。特别是,带孔的EGSM光束的偏振度比无孔的EGSM光束对湍流的影响更不敏感。

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