无密钥量子通信协议中的安全措施

Alla Altalib, Yomna Al-Ibrahim, Zahra Almahfoudh, Marius Nagy, Naya Nagy
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引用次数: 1

摘要

研究表明,使用包含量子特性组件的设备可以实现两个伙伴之间的安全通信。虽然这样的设备处于实际可用性的胆小阶段,但所展示的量子特性在理论上已经很好地定义:持久量子态的量子比特(量子位),适用于量子位的量子变换或门,以及设备之间的量子通信通道。本文对不使用加/解密密钥的量子通信协议的安全级别进行了测量和仿真验证。该算法比先分发密钥的两步协议更简单。我们的模拟根据几个参数来衡量协议的安全级别:编码基数的数量(两个或三个),附加到消息的签名字符串的长度,窃听者检查的量子比特的百分比等。
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Security Measures in a Keyless Quantum Communication Protocol
It has been shown that secure communication between two partners can be achieved with devices containing components with quantum properties. While such devices are in timid stages of practical availability, the quantum properties exhibited are well defined theoretically: quantum bits (qubits) in persistent quantum states, quantum transformations or gates applicable on qubits, and quantum communication channels between devices. The present paper measures and verifies by simulation a security level of a quantum communication protocol that does not use an encryption/decryption key. The algorithm is simpler than the two-step protocols that involve the distribution of a secret key first. Our simulations measure the security level of the protocol depending on several parameters: the number of encoding bases (two or three), the length of the signature string attached to the message, the percentage of qubits the eavesdropper inspects, etc.
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