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Quantum message authentication scheme based on remote state preparation

机译:基于远程状态准备的量子消息认证方案

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We propose a quantum message authentication scheme that provides integrity and origin authentication using a remote state preparation. Authentication is one of the security services that must be provided in secure communication. Quantum message authentication is the base scheme for realizing quantum authentication that is known to be a secure technique even in a forthcoming quantum computer environment. The proposed scheme creates a quantum message authentication code (QMAC) with only a single qubit measurement. It is therefore easy to implement and operate compared to existing technology that normally generates a QMAC with a Bell measurement or controlled unitary operation. For security analysis, we design a quantum random oracle model based on the random oracle model and demonstrate the quantum collision resistance with it. From the analysis, the probability of the quantum collision is 0.69(N) per qubit, where N is the size of the message sequence. Since the probability of quantum collision in the case of N = 13 becomes extremely low of under 0.8%, we confirm that the proposed scheme guarantees the integrity and origin authentication of the message.
机译:我们提出了一种量子消息认证方案,它使用远程状态准备提供完整性和原始身份验证。身份验证是必须在安全通信中提供的安全服务之一。 Quantum Message认证是用于实现Quantum认证的基础方案,即使在即将到来的量子计算机环境中,也已知是一种安全技术。所提出的方案仅具有单个Qubit测量的量子消息认证码(QMAC)。因此,与现有技术相比,易于实现和操作,这些技术通常产生具有铃声测量或控制的酉操作的QMAC。对于安全性分析,我们根据随机Oracle模型设计量子随机型号模型,并用它展示量子碰撞电阻。根据分析,量子碰撞的概率为每种qubit 0.69(n),其中n是消息序列的大小。由于在N&GT的情况下量子碰撞的概率; = 13变得极低的0.8%,我们确认所提出的方案保证了消息的完整性和原点认证。

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