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Integrated diffractive shearing interferometry for adaptive wavefront sensing

机译:集成衍射剪切干涉仪用于自适应波前传感

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摘要

We present theory, design, and preliminary experimental studies for a compact wavefront sensor based on lateral shearing interferometry using a binary phase grating, image sensor, and Fourier-based processing. The integrated system places a diffractive element directly onto an image sensor to generate interference fringes within overlapping diffraction orders. The shearing ratio and the interferogram signal-to-noise ratio directly affect the reconstruction accuracy of wavefronts with differing spatial variations. Optimal shearing parameters associated with the autocorrelation of the input encourage placing a spatial light modulator as the diffractive element allowing adaptive wavefront sensing. Experimental results from a fixed-grating system are presented as well as requirements for next-generation adaptive systems.
机译:我们介绍了基于横向剪切干涉术的紧凑型波前传感器的理论,设计和初步实验研究,该方法使用了二进制相位光栅,图像传感器和基于傅立叶的处理。集成系统将衍射元件直接放置在图像传感器上,以在重叠衍射级内生成干涉条纹。剪切比和干涉图信噪比直接影响具有不同空间变化的波前的重建精度。与输入的自相关相关的最佳剪切参数鼓励将空间光调制器作为允许自适应波前感测的衍射元件。介绍了固定光栅系统的实验结果以及对下一代自适应系统的要求。

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