Non-linear Signal Retrieval in Wide-Band Photonic Time-Stretch Systems Using the Gerchberg-Saxton Algorithm

G. Stigwall, S. Galt
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引用次数: 4

Abstract

The Gerchberg-Saxton algorithm, which is often used for phase retrieval in free space diffractive optics, is here applied to the problem of signal retrieval in dual-output (phase-diverse) photonic time-stretch systems. Using wide band noise covering the first two fading frequencies as an input signal we numerically analyze the proposed algorithm for different numbers of iterations, measurement noise levels, mis-estimation of system parameters and optical modulation depths. We show that the algorithm can successfully compensate for non-linear distortion of the signal due to chromatic dispersion, that it is robust to noise and mis-estimated system parameters, and that it converges very rapidly (within ten iterations). For lower signal-to-noise ratios and/or smaller modulation depths it also provides a non-iterative method of retrieving the input signal
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基于Gerchberg-Saxton算法的宽带光子时间拉伸系统非线性信号检索
Gerchberg-Saxton算法通常用于自由空间衍射光学的相位恢复,本文将其应用于双输出(相位变化)光子时间拉伸系统的信号恢复问题。采用覆盖前两个衰落频率的宽带噪声作为输入信号,数值分析了该算法在不同迭代次数、测量噪声水平、系统参数估计误差和光调制深度等方面的性能。我们表明,该算法可以成功地补偿由于色散引起的信号非线性失真,它对噪声和错误估计的系统参数具有鲁棒性,并且收敛速度非常快(在十个迭代内)。对于较低的信噪比和/或较小的调制深度,它还提供了检索输入信号的非迭代方法
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