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Theoretical Analysis of Interferometer Wave Front Tilt and Fringe Radiant Flux on a Rectangular Photodetector

机译:矩形光电探测器干涉仪波前倾斜和边缘辐射通量的理论分析

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摘要

This paper is a theoretical analysis of mirror tilt in a Michelson interferometer and its effect on the radiant flux over the active area of a rectangular photodetector or image sensor pixel. It is relevant to sensor applications using homodyne interferometry where these opto-electronic devices are employed for partial fringe counting. Formulas are derived for radiant flux across the detector for variable location within the fringe pattern and with varying wave front angle. The results indicate that the flux is a damped sine function of the wave front angle, with a decay constant of the ratio of wavelength to detector width. The modulation amplitude of the dynamic fringe pattern reduces to zero at wave front angles that are an integer multiple of this ratio and the results show that the polarity of the radiant flux changes exclusively at these multiples. Varying tilt angle causes radiant flux oscillations under an envelope curve, the frequency of which is dependent on the location of the detector with the fringe pattern. It is also shown that a fringe count of zero can be obtained for specific photodetector locations and wave front angles where the combined effect of fringe contraction and fringe tilt can have equal and opposite effects. Fringe tilt as a result of a wave front angle of 0.05° can introduce a phase measurement difference of 16° between a photodetector/pixel located 20 mm and one located 100 mm from the optical origin.
机译:本文是对迈克尔逊干涉仪中镜面倾斜及其对矩形光电探测器或图像传感器像素有效区域上的辐射通量的影响的理论分析。这与使用零差干涉测量法的传感器应用有关,在这些应用中,这些光电设备用于部分条纹计数。对于在条纹图案内的可变位置和具有变化的波前角的情况,导出了通过检测器的辐射通量的公式。结果表明,通量是波前角的阻尼正弦函数,具有波长与检测器宽度之比的衰减常数。动态条纹图案的调制幅度在波前角减小到零,波前角是该比率的整数倍,结果表明,辐射通量的极性仅以这些倍数变化。倾斜角的变化会导致包络线下的辐射通量振荡,其频率取决于带有条纹图案的检测器的位置。还表明,对于特定的光电探测器位置和波阵面角,可获得零条纹计数,其中条纹收缩和条纹倾斜的组合效果可以具有相同且相反的效果。由于波前角为0.05°而导致的条纹倾斜会在距光学原点20 mm的光电探测器/像素与距光学原点100 mm的像素之间引入16°的相位测量差。

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