Multiplicative to Additive Speckle Noise Conversion via Phase Cancellation with Photorefractive Phase Conjugators

J. Khoury, A. M. Biernacki, C. Woods, M. Cronin-Glolmb
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Abstract

A new technique for dealing with multiplicative complex speckle noise on coherently imaged amplitude objects is presented. This technique uses phase cancellation via quadratic nonlinearity to convert the multiplicative noise into additive noise on the Fourier spectrum. This is accomplished using a noisy image as the pump and a clean planar reference beam as the probe in a degenerate four-wave mixing phase conjugator. The counterpropagating pump is provided by the phase conjugate of the noisy image from a total internal reflection self-pumped phase conjugator whose input is the noisy image transmitted through the first crystal. The phase conjugate output is read off from the clean probe; the remaining noise on the Fourier spectrum of the output image is additive and can be removed by nonlinear filtering in the Fourier plane [1].
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利用光折变相位共轭器相消的乘性到加性散斑噪声转换
提出了一种处理相干成像振幅目标上的乘性复散斑噪声的新方法。该技术通过二次非线性相位抵消将傅里叶谱上的乘性噪声转换为加性噪声。在简并四波混频相位共轭器中,使用噪声图像作为泵浦,干净的平面参考光束作为探头来实现这一目标。反传播泵由来自全内反射自泵浦相位共轭器的噪声图像的相位共轭提供,该相位共轭器的输入是通过第一晶体传输的噪声图像。从清洁探头读出相位共轭输出;输出图像傅里叶谱上剩余的噪声是加性的,可以通过傅里叶平面的非线性滤波去除[1]。
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