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Quantitative security evaluation of optical encryption using hybrid phase- and amplitude-modulated keys

机译:使用混合相位和幅度调制密钥的光学加密的定量安全性评估

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摘要

In the increasing number of system approaches published in the field of optical encryption, the security level of the system is evaluated by qualitative and empirical methods. To quantify the security of the optical system, we propose to use the equivalent of the key length routinely used in algorithmic encryption. We provide a calculation method of the number of independent keys and deduce the binary key length for optical data encryption. We then investigate and optimize the key length of the combined phase- and amplitude-modulated key encryption in the holographic storage environment, which is one of the promising solutions for the security enhancement of single- and double-random phase-encoding encryption and storage systems. We show that a substantial growth of the key length can be achieved by optimized phase and amplitude modulation compared to phase-only encryption. We also provide experimental confirmation of the model results.
机译:在光加密领域中越来越多的系统方法中,通过定性和经验方法来评估系统的安全级别。为了量化光学系统的安全性,我们建议使用算法加密中常规使用的密钥长度的等效项。我们提供了一种独立密钥数量的计算方法,并推导了用于光学数据加密的二进制密钥长度。然后,我们研究并优化了全息存储环境中组合的调相和调幅组合密钥加密的密钥长度,这是用于增强单和双随机相位编码加密和存储系统安全性的有希望的解决方案之一。我们表明,与仅相位加密相比,可以通过优化的相位和幅度调制来实现密钥长度的大幅增长。我们还提供了模型结果的实验​​确认。

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