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首页> 外文期刊>International Journal of Quantum Information >ENCRYPTION-BASED NETWORKING QUANTUM TELEPORTATION WITH TRIPLET GREENBERGER–HORNE–ZEILINGER STATES
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ENCRYPTION-BASED NETWORKING QUANTUM TELEPORTATION WITH TRIPLET GREENBERGER–HORNE–ZEILINGER STATES

机译:三态Greenberger–Horn–Zeilinger状态的基于加密的网络量子隐形传态

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摘要

An encryption-based networking quantum teleportation scheme is proposed for the secure quantum communication network based on the novel networking quantum key distribution (NQKD) with the Greenberger–Horne–Zeilinger (GHZ) state. The security is exactly guaranteed via the entanglement of the GHZ quantum system. In the process of quantum teleportation, the server Charlie prepares the GHZ states and the users exploit the four local unitary operations corresponding to the keys shared aforehand to encrypt/decrpt for the initial messages. One legal user can communicate with another on the network securely as they may perform a quantum privacy application on the encrypted quantum states transmitted in quantum channel. Its intrinsic efficiency is high as almost all the instances are useful and each GHZ state can carry two different encrypted single-qubit states. To reconstruct these transmitted messages, the users exploit Bell measurement and perform local operations with respect to the shared keys in NQKD, which will improve its security in a noise quantum channel.
机译:提出了一种基于加密的网络量子隐形传态方案,该方案基于具有Greenberger–Horne–Zeilinger(GHZ)状态的新型网络量子密钥分配(NQKD),用于安全量子通信网络。通过GHZ量子系统的纠缠可以完全保证安全性。在量子隐形传态的过程中,服务器查理准备GHZ状态,并且用户利用与预先共享的密钥相对应的四个局部unit运算对初始消息进行加密/解密。一个合法用户可以安全地与网络上的另一个用户通信,因为他们可以对在量子通道中传输的加密量子状态执行量子隐私应用程序。它的固有效率很高,因为几乎所有实例都是有用的,并且每个GHZ状态都可以携带两个不同的加密单量子位状态。为了重建这些传输的消息,用户可以利用Bell测量并针对NQKD中的共享密钥执行本地操作,这将提高其在噪声量子信道中的安全性。

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