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用于全息数据存储的快速非干涉迭代相位恢复

Fast non-interferometric iterative phase retrieval for holographic data storage.

作者信息

Lin Xiao, Huang Yong, Shimura Tsutomu, Fujimura Ryushi, Tanaka Yoshito, Endo Masao, Nishimoto Hajimu, Liu Jinpeng, Li Yang, Liu Ying, Tan Xiaodi

出版信息

Opt Express. 2017 Dec 11;25(25):30905-30915. doi: 10.1364/OE.25.030905.

Abstract

Fast non-interferometric phase retrieval is a very important technique for phase-encoded holographic data storage and other phase based applications due to its advantage of easy implementation, simple system setup, and robust noise tolerance. Here we present an iterative non-interferometric phase retrieval for 4-level phase encoded holographic data storage based on an iterative Fourier transform algorithm and known portion of the encoded data, which increases the storage code rate to two-times that of an amplitude based method. Only a single image at the Fourier plane of the beam is captured for the iterative reconstruction. Since beam intensity at the Fourier plane of the reconstructed beam is more concentrated than the reconstructed beam itself, the requirement of diffractive efficiency of the recording media is reduced, which will improve the dynamic range of recording media significantly. The phase retrieval only requires 10 iterations to achieve a less than 5% phase data error rate, which is successfully demonstrated by recording and reconstructing a test image data experimentally. We believe our method will further advance the holographic data storage technique in the era of big data.

摘要

快速非干涉相位检索是一种非常重要的技术,因其易于实现、系统设置简单且噪声容忍能力强等优点,在相位编码全息数据存储及其他基于相位的应用中具有重要意义。在此,我们基于迭代傅里叶变换算法和编码数据的已知部分,提出一种用于4级相位编码全息数据存储的迭代非干涉相位检索方法,该方法将存储码率提高到基于幅度方法的两倍。在迭代重建过程中,仅需在光束的傅里叶平面捕获一幅图像。由于重建光束在傅里叶平面的光强比重建光束本身更为集中,从而降低了对记录介质衍射效率的要求,这将显著提高记录介质的动态范围。该相位检索仅需10次迭代即可实现低于5%的相位数据错误率,通过对测试图像数据进行记录和重建,已成功验证了这一点。我们相信,我们的方法将在大数据时代进一步推动全息数据存储技术的发展。

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