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首页> 外文期刊>Results in Physics >Shaping the far-zone intensity, degree of polarization, angle of polarization, and ellipticity angle using vector Schell-model sources
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Shaping the far-zone intensity, degree of polarization, angle of polarization, and ellipticity angle using vector Schell-model sources

机译:使用向量Schell模型源调整远区强度,极化程度,极化角和椭圆率角

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摘要

This paper presents a method to control both the shape and polarization of a beam in the far field using a vector Schell-model source. Given a desired far-zone beam shape and polarization, and applying Fourier and statistical optics theory, we derive the requisite second-order moments of said source, discuss what aspects of the far-zone beam can be controlled, and develop a step-by-step procedure for synthesizing the required random vector field instances. We validate this approach with Monte-Carlo wave-optics simulations. The results are found to be in very good agreement with the desired far-zone beam characteristics. The beam-shaping technique developed in this paper will find use in optical trapping, optical communications, directed energy, remote sensing, and medical applications.
机译:本文提出了一种使用矢量谢尔模型源控制远场光束的形状和偏振的方法。给定所需的远区光束形状和偏振,并应用傅立叶和统计光学理论,我们得出所述源的必要二阶矩,讨论远区光束的哪些方面可以控制,并逐步开发步骤,用于合成所需的随机矢量场实例。我们通过蒙特卡洛波光学仿真来验证这种方法。发现结果与所需的远区光束特性非常吻合。本文开发的光束整形技术将用于光阱,光通信,定向能量,遥感和医疗应用。

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