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用于二次相位加密的基于低光子计数的数字全息术。

Low photon count based digital holography for quadratic phase cryptography.

作者信息

Muniraj Inbarasan, Guo Changliang, Malallah Ra'ed, Ryle James P, Healy John J, Lee Byung-Geun, Sheridan John T

出版信息

Opt Lett. 2017 Jul 15;42(14):2774-2777. doi: 10.1364/OL.42.002774.

Abstract

Recently, the vulnerability of the linear canonical transform-based double random phase encryption system to attack has been demonstrated. To alleviate this, we present for the first time, to the best of our knowledge, a method for securing a two-dimensional scene using a quadratic phase encoding system operating in the photon-counted imaging (PCI) regime. Position-phase-shifting digital holography is applied to record the photon-limited encrypted complex samples. The reconstruction of the complex wavefront involves four sparse (undersampled) dataset intensity measurements (interferograms) at two different positions. Computer simulations validate that the photon-limited sparse-encrypted data has adequate information to authenticate the original data set. Finally, security analysis, employing iterative phase retrieval attacks, has been performed.

摘要

最近,基于线性规范变换的双随机相位加密系统的脆弱性已被证明。为了缓解这一问题,据我们所知,我们首次提出了一种在光子计数成像(PCI)模式下使用二次相位编码系统来保护二维场景安全的方法。采用位置相移数字全息术来记录受光子限制的加密复样本。复波前的重建涉及在两个不同位置进行的四次稀疏(欠采样)数据集强度测量(干涉图)。计算机模拟验证了受光子限制的稀疏加密数据具有足够的信息来认证原始数据集。最后,进行了采用迭代相位检索攻击的安全性分析。

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