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Short-range synthetic aperture imaging at 633 nm by digital holography

机译:通过数字全息术在633 nm处进行短距离合成孔径成像

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摘要

We present an active optical synthetic aperture-imaging system. A phase-step digital holographic setup is used as a wavefront sensor in the far field. The overlap of the holograms enables the estimation and compensation of their relative positions and phase with a speckle cross-correlation algorithm. Experimental results on a short-range synthetic aperture setup at 633 nm are presented that are based on 128×128 holograms. The synthesis is executed in one direction by means of rotation of the object. Test images show a significant gain of resolution in the synthesis direction. Processing errors are estimated through experiment. Random processing errors of a synthetic pupil composed of 33 merged holograms are negligible, but biases induced by unknown optical aberrations of the reference wave induce defocusing and astigmatism.
机译:我们提出了一个主动的光学合成孔径成像系统。相位步进数字全息设置被用作远场中的波前传感器。全息图的重叠使得能够使用散斑互相关算法来估计和补偿它们的相对位置和相位。基于128×128全息图,给出了在633 nm的短距离合成孔径设置上的实验结果。通过对象的旋转在一个方向上执行合成。测试图像显示了在合成方向上分辨率的显着提高。通过实验估算加工误差。由33个合并的全息图组成的合成光瞳的随机处理误差可以忽略不计,但是由参考波的未知光学像差引起的偏差会引起散焦和像散。

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