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Encrypted optical storage with angular multiplexing

机译:带角度复用的加密光存储

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摘要

We present the first, to our knowledge, demonstration of an encrypted optical storage based on doublerandom phase encoding by using angular multiplexing in a photorefractive material. Original two-dimensional data are encrypted by use of two random phase codes located in the input and the Fourier planes and are then stored holographically in a LiNbO_(3):Fe crystal. The retrieval of the original data can be achieved with a phase-conjugated readout scheme. We demonstrate the encryption and the decryption of multiple frames of two-dimensional digital data by using angular multiplexing. We also evaluate numerically the influence of the bandwidth of the optical system on the decrypted digital data. The bit error rate as a function of the optical system bandwidth is presented.
机译:据我们所知,我们将通过在光折射材料中使用角度多路复用技术,展示基于双随机相位编码的加密光学存储设备的第一个演示。原始二维数据通过使用位于输入平面和傅立叶平面中的两个随机相位代码进行加密,然后全息存储在LiNbO_(3):Fe晶体中。原始数据的检索可以通过相位共轭读出方案来实现。我们通过使用角度多路复用演示了二维数字数据的多个帧的加密和解密。我们还从数字上评估了光学系统带宽对解密的数字数据的影响。提出了作为光学系统带宽的函数的误码率。

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