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Encrypted optical storage with wavelength-key and random phase codes

机译:带有波长密钥和随机相位代码的加密光学存储

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摘要

An encrypted optical memory system that uses a wavelength code as well as input and Fourier-plane random phase codes is proposed. Original data are illuminated by a coherent light source with a specified wavelength and are then encrypted with two random phase codes before being stored holographically in a photorefractive material. Successful decryption requires the use of a readout beam with the same wavelength as that used in the recording, in addition to the correct phase key in the Fourier plane. The wavelength selectivity of the proposed system is evaluated numerically. We show that the number of available wavelength keys depends on the correlation length of the phase key in the Fourier plane. Preliminary experiments of encryption and decryption of optical memory in a LiNbO_(3):Fe photorefractive crystal are demonstrated.
机译:提出了一种使用波长代码以及输入和傅里叶平面随机相位代码的加密光学存储系统。原始数据由具有指定波长的相干光源照射,然后在将其全息存储在光折变材料中之前,用两个随机相位代码进行加密。成功的解密除了使用傅立叶平面中的正确相位密钥外,还需要使用与记录中使用的波长相同的波长的读出光束。数值评估了所提出系统的波长选择性。我们证明了可用波长键的数量取决于傅立叶平面中相位键的相关长度。对LiNbO_(3):Fe光折变晶体中光学存储器的加密和解密进行了初步实验。

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