QKD protocol based on entangled states by trusted third party

Abdulbast A. Abushgra, K. Elleithy
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引用次数: 4

Abstract

Quantum cryptography is considered a solution for sharing secret information in a secure mode. Establishing a quantum security platform into an exciting system requires a package of stable processes. One of these processes is based on creating a Quantum Key Distribution (QKD) protocol or sharing a secret key. This paper presents a QKD protocol that utilizes two quantum channels to prepare a shared secret key. The first communication channel will be initiated by entanglement states, where the entangled photons will be emitted by a trusted third party. The second communication channel utilizes the superposition states that will be initiated by the one of the communicated parties. Moreover, the protocol produces a string of random qubits after verifying the communicated legitimate parties during entangled state channels. The produced string will reflect the shared secret key between the users.
可信第三方基于纠缠态的QKD协议
量子密码学被认为是一种在安全模式下共享秘密信息的解决方案。建立一个量子安全平台到一个激励系统需要一系列稳定的过程。其中一个过程是基于创建量子密钥分发(QKD)协议或共享秘密密钥。提出了一种利用两个量子通道制备共享密钥的量子密钥分配协议。第一个通信通道将由纠缠状态启动,其中纠缠光子将由可信的第三方发射。第二通信信道利用将由通信方之一发起的叠加状态。此外,该协议在验证纠缠状态信道中通信的合法方后产生一串随机量子比特。生成的字符串将反映用户之间的共享密钥。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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