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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Numerical simulation of the physical properties of Gaussian mode using the angular spectrum technique
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Numerical simulation of the physical properties of Gaussian mode using the angular spectrum technique

机译:高斯模态物理特性的角谱技术数值模拟

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摘要

This research aims to study the analytical and numerical simulation of the Gaussian beams variables of the fundamental mode TEM00 during its propagation in free space between two parallel planes, using the angular spectrum technique. A dedicated computational program in Borland C++ Builder was developed to calculate the diffraction through the angular spectrum technique with the application of two fast 2D Fourier transforms. Some 2D and 3D cross-sections of results are presented. That helped to present the complex amplitude of the Gaussian beams with its real and imaginary parts, Gouy phase shift and full phase and intensity distribution. The Gaussian beam is one of the rare cases when the diffraction problem solution, defined within the frames of scalar and paraxial approximation, is given in the exact analytical form. A comparison between that form and the results of the angular spectrum algorithm brings information about the performance quality of that algorithm. (C) 2016 Elsevier GmbH. All rights reserved.
机译:本研究旨在利用角谱技术研究基本模式TEM00在两个平行平面之间的自由空间中传播期间的高斯光束变量的分析和数值模拟。开发了Borland C ++ Builder中的专用计算程序,通过应用两个快速2D傅立叶变换,通过角谱技术计算衍射。给出了结果的一些2D和3D横截面。这有助于呈现高斯光束的复杂振幅及其实部和虚部,Gouy相移以及完整的相位和强度分布。当以精确的解析形式给出标量和近轴近似框架内定义的衍射问题解时,高斯光束是极少数情况之一。将该形式与角度谱算法的结果进行比较可以带来有关该算法性能质量的信息。 (C)2016 Elsevier GmbH。版权所有。

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