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An Optimized, Authenticated Key Distribution Protocol for Optical Channels

机译:用于光学通道的优化,经过认证的密钥分布协议

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In this paper, a key distribution protocol based on the integration of both classical and quantum cryptography is developed. Quantum physics laws ensure detection of eavesdropping over optical channels, while classical cryptography provides convenient techniques that enable efficient user authentication and prevent denial of previous commitments. The proposed scheme is based on the RSA-TBOS signcryption scheme to achieve the combined functionality of a digital signature and encryption in an efficient manner. It therefore offers four security services: privacy, authenticity, data integrity and non-repudiation. The ciphertext is converted to binary bits and then to qubits. The protocol involves a small number of rounds and the number of keys stored at the user side is kept minimal promoting its use in large networks. A comparative study with other schemes in literature revealed that it represents a remarkably good trade-off between the storage as well as bandwidth requirements and the security services offered.
机译:在本文中,开发了一种基于经典和量子加密集成的关键分布协议。量子物理法确保在光学通道上检测窃听,而经典密码提供方便的技术,以实现高效的用户身份验证和防止拒绝先前的承诺。该方案基于RSA-TBOS签约方案,以有效的方式实现数字签名和加密的组合功能。因此,它提供了四种安全服务:隐私,真实性,数据完整性和不拒绝。密文将转换为二进制位,然后转换为Qubits。该协议涉及少量的圆数,并且存储在用户侧的键数量保持最小促进其在大型网络中的使用。与文献中的其他方案的比较研究显示,它代表了存储和带宽要求和提供的安全服务之间具有显着的良好权衡。

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