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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Propagation analysis of flattened circular Gaussian beams with a circular aperture in turbulent atmosphere
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Propagation analysis of flattened circular Gaussian beams with a circular aperture in turbulent atmosphere

机译:湍流大气中具有圆形孔径的扁平高斯圆光束的传输分析。

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The propagation properties of flattened Gaussian beam with aperture in turbulent atmosphere have been studied by using the extended Huygens–Fresnel principle. From the study and numerical calculation, the effects of aperture on the propagation of flattened Gaussian beams in turbulent atmosphere have been illuminated. It shows that when the value of the truncation parameter δ is bigger, for example δ≥2, the effects of aperture on the propagation properties are too small to be neglected. But when the truncation parameter δ is smaller, for example δ<2, the effects of aperture are complex. The peak value of the average intensity descends more rapidly and the beam spot spreads quicker with aperture than that without aperture when the propagation distance increases. Meanwhile, with the propagation distance increasing, the average intensity profiles of flattened Gaussian beams gradually convert into Gaussian average intensity profiles. In addition, some limiting cases are also discussed. It agrees with the existing results
机译:利用扩展的惠更斯-菲涅耳原理研究了平坦的高斯光束在湍流大气中的传播特性。通过研究和数值计算,揭示了孔径对湍流大气中扁平高斯光束传播的影响。它表明,当截断参数δ的值较大时,例如δ≥2,孔径对传播特性的影响太小而不能忽略。但是,当截断参数δ较小(例如δ<2)时,光圈的影响会很复杂。当传播距离增加时,平均强度的峰值下降得更快,并且有孔的束斑比没有孔的束斑扩散更快。同时,随着传播距离的增加,平坦高斯光束的平均强度分布逐渐转换为高斯平均强度分布。此外,还讨论了一些限制情况。它与现有结果一致

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