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Quantum Secure Direct Communication scheme based on d- dimensional Bell entangled state

机译:基于D维响铃纠缠州的量子安全直接通信方案

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In order to improve the communication efficiency and security of Quantum Secure Direct Communication, a new Quantum Secure Direct Communication scheme based on d-dimension Bell entangled state is proposed. In the scheme, the receiver and the sender transport the d-dimensional Bell particles as secure test particles to ensure the security of communication. The receiver can calculate the security of the channel according to the measurement of d-dimensional Bell state particles, which is based on the entanglement properties of the d-dimensional Bell state. Secret information is transmitted through the other d-dimensional Bell state particles by dense coding technique. Then, the receiver can determine the security of the channel by comparing the measurements of the particles and makes a joint measurement of the transmitted particles to obtain secret information. Finally, the entropy theory is used to analyze the security of the protocol. Under the four dimensional Bell state, the transmission efficiency of the protocol is 90.90% and the efficiency of the quantum bit is 45.45%. The results show that the proposed scheme is safe and reliable and has high transmission efficiency.
机译:为了提高量子安全直接通信的通信效率和安全性,提出了一种基于D-尺寸钟缠结状态的新的量子安全直接通信方案。在该方案中,接收器和发件人将D维钟粒子传送为安全测试粒子,以确保通信的安全性。接收器可以根据D尺寸钟态粒子的测量来计算信道的安全性,这基于D维响铃状态的缠结特性。秘密信息通过致密编码技术通过其他D尺寸钟态粒子传输。然后,接收器可以通过比较粒子的测量来确定信道的安全性,并使透射粒子进行关节测量以获得秘密信息。最后,熵理论用于分析协议的安全性。在四维钟钟状态下,协议的传输效率为90.90%,量子位的效率为45.45%。结果表明,该方案安全可靠,传输效率高。

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