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Deflectometer system using Fourier transform and METHOD PERFORMANCE deflectometer

机译:使用傅里叶变换和METHOD PERFORMANCE偏转仪的偏转仪系统

摘要

The present invention relates to a Fourier transform deflectometry system (1) and method for the optical inspection of a phase and amplitude object (2) placed in an optical path between a grating (3) and an imaging system (4), at a distance h of said grating 3. The grating (3) forms a contrast-based periodic pattern with spatial frequencies μ0, v0 in, respectively, orthogonal axes x,y in an image plane, and the imaging system (4) comprises an objective (5) and an imaging sensor (6) comprising a plurality of photosensitive elements. Spatial frequencies μ0, v0 are equal or lower than the Nyquist frequencies of the imaging system in the respective x and y axes. According to the method of the invention, a first image of said pattern, distorted by the phase and amplitude object (2), is first captured through the objective (5) by the imaging sensor (6). Then, a Fourier transform of said first image in a spatial frequency domain is calculated, at least one first- or higher-order spectrum of said Fourier transform is selected and shifted in said frequency domain, so as to substantially place it at a central frequency of said Fourier transform, and a reverse Fourier transform of said at least one shifted first- or higher-order spectrum of said Fourier transform is performed so as to obtain a complex function g(x,y)=l(x,y)eiφ(x,y), wherein l(x,y) is an intensity and φ(x,y) a phase linked to optical deflection angles ϑx, ϑy in, respectively, the directions of the x and y axes, in the following form: φ(x,y)=- 2ττh(μ0tanϑx+v0tanϑy).
机译:本发明涉及一种傅立叶变换偏转测量系统(1)和方法,用于以一定距离光学检查放置在光栅(3)和成像系统(4)之间的光路中的相位和振幅物体(2)。所述光栅3的h。光栅(3)形成基于对比度的周期性图案,其在像平面中分别在正交轴x,y上具有空间频率μ0,v 0,并且成像系统(4)包括物镜(5 )和包括多个光敏元件的成像传感器(6)。在各个x轴和y轴上,空间频率μ0,v 0等于或低于成像系统的奈奎斯特频率。根据本发明的方法,首先由成像传感器(6)通过物镜(5)捕获被相位和幅度物体(2)扭曲的所述图案的第一图像。然后,计算所述第一图像在空间频域中的傅立叶变换,选择所述傅立叶变换的至少一个一阶或更高阶频谱并在所述频域中移位,从而将其基本上置于中心频率。进行所述傅立叶变换的傅里叶变换,并对所述傅立叶变换的所述至少一个移位的一阶或更高阶频谱进行反向傅立叶变换,以获得复函数g(x,y)= l(x,y)eiφ (x,y),其中,l(x,y)是强度,而φ(x,y)是分别与x和y轴方向上的光学偏转角ϑ x,ϑ y相关的相位,其形式如下:φ(x,y)=-2ττh(μ0tanϑ x + v0tanϑ y)。

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