量子密钥分配中随机比特生成的统计分析

O. Mohammad, Safia Abbas, El-Sayed M. El-Horbaty, A. M. Salem
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引用次数: 4

摘要

最近,量子密码学研究人员利用量子密钥,为密钥分发和管理过程提供更可信的环境。量子密钥是根据量子力学现象生成的。然而,量子密钥生成的所有事件都依赖于在有限距离内各方之间交换光子。因此,本文采用NIST和DIEHARD等随机测试算法来测试和评估量子密钥生成的随机率。然后,根据具体分析,建立初始化向量,即对称加密算法的种子,作为算法的密钥。本文采用了基于原始模式和隐私模式两种不同创新模式的(BB84)量子密钥分发(QKD)协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Statistical analysis for random bits generation on quantum key distribution
Recently, Quantum cryptography researchers utilize the quantum keys, in order to provide a more trusted environment for both key distribution and management processes. The quantum keys are generated based on quantum mechanics phenomena. However, all events for the quantum key generation rely on exchanging photons between parties over limited distances. So, in this paper, random tests algorithms, such as NIST and DIEHARD, are implemented to test and evaluate the randomness rates for quantum keys generation. After then, the initialized vector, which is the seed of the symmetric encryption algorithms, is established based on specific analysis to be a key for the algorithms. The paper utilizes the (BB84) quantum key distribution (QKD) protocol based on two different innovated modes, the raw and privacy modes.
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