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Mathematical modeling analysis on a small and compact two-dimensional CGLSI interference system

机译:小型二维CGLSI干扰系统数学建模分析

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When using interference wave front to detect density field, it is better to have an interference system which is small and compact so that different directions of wave fronts can be obtained to reconstruct the density field to be detected. A two-dimensional CGLSI (Cross Grating Lateral Shearing Interferometer) system which consists of a two-dimensional cross grating and a two-dimensional order-selecting window used as a filter is presented in this paper. Lateral shearing interferogram of two orthogonal directions (X and Y) each other can be obtained by using this system. With the advantage of anti-vibration and no reference surface, lateral shearing interferometer is suitable to inhibit external environment disturbance. In this paper, analysis and simulations have been conducted on grating constant from geometrical optics and physical optics using Fresnel approximation method respectively based on lateral shearing rate, windows' distance in two-dimensional order-selecting window and layout of the system which concludes the best option for grating constant is d = 25μm. The most optimized design of size and distance for windows in two-dimensional order-selecting window has been carried out on the basis that complex amplitude distribution can go through the filter so that there is no distortion on wave front. All designs have gone through computer simulation and fit into the requirements for the designs.
机译:当使用干扰波前面检测密度场时,最好具有小且紧凑的干扰系统,从而可以获得不同的波前方的方向以重建要检测的密度场。本文介绍了由二维交叉光栅组成的二维CGLSI(交叉光栅横向剪切干涉干涉干涉干涉干涉干涉干涉干涉干涉干涉干涉干涉干涉干涉干涉干涉窗口。通过使用该系统可以获得两个正交方向(X和Y)的横向剪切干涉图。凭借抗振振动和不参考表面的优点,横向剪切干涉仪适合于抑制外部环境干扰。在本文中,通过分别基于横向剪切速率,在二维顺序选择窗口中的横向剪切速率,窗口的距离和系统布局的窗口的距离,在几何光学和物理光学中进行分析和仿真。光栅常数的选项是d =25μm。在二维订单选择窗口中最优化的窗户的尺寸和距离设计是在复杂的幅度分布可以通过过滤器的基础上进行的,使得波前面没有失真。所有设计都经过计算机模拟,并适合设计的要求。

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