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Higher order mode gaussian beam waves propagating through turbulence

机译:高阶模式高斯光束波通过湍流传播

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摘要

It is well known that laser beams spread as they propagate through free space due to natural diffraction, and that there is additional spreading when optical waves propagate through atmospheric turbulence. Previous studies on Gaussian beams have mainly involved the lowest order mode (zero-order). The study of higher order mode Gaussian beams has involved Hermite-Gaussian and Laguerre-Gaussian beams for rectangular and cylindrical geometry respectively. These studies have developed expressions for the field and intensity in free space in addition to developing new definitions of beam size in the receiver plane for the higher order modes. In this paper we calculate the mean intensity of higher order mode Gaussian beams propagating through atmospheric turbulence, and, based on previously developed definitions for beam radius, we calculate the additional beam spreading due to random media. It is shown that higher order mode Gaussian beams experience less percentage of additional broadening due to atmospheric fluctuations than the zero order mode beams.
机译:众所周知的是激光束传播,因为它们通过自由空间传播由于自然衍射,并且有更多的时候光波传播穿过大气湍流扩散。在高斯光束以往的研究主要涉及最低阶模式(零级)。高阶模高斯光束的研究已经涉及厄米 - 高斯和拉盖尔 - 高斯光束分别为矩形和圆柱形的几何形状。这些研究对自由空间的领域和力度发达的表情除了在该接收平面的高阶模式发展光束尺寸的新定义。在本文中,我们计算出高阶模高斯光束通过大气湍流传播,并且,基于对光束半径以前开发定义的平均强度,我们计算了额外的光束扩展由于随机介质。结果表明,高阶模高斯光束经验较少的额外加宽的百分比由于大气的波动比零阶模式波束。

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