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Controlled Quantum Secure Direct Communication Protocol Based on Five-Particle Cluster State and EPR Pair Entanglement Swapping

机译:基于五粒子簇状态和EPR对缠结交换的控制量子安全直接通信协议

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To transmit secure message, a controlled quantum secure direct communication protocol is proposed based on five-particle cluster state and EPR pair entanglement swapping. The sender and the controller own their EPR pair sequences respectively. The sender sends one photon of the EPR pair he owns to controller. The controller performs local unitary operation randomly on one photon of the EPR pair he owns and sends it to the receiver as his permission. The sender encodes his secret message on the other photon of the EPR pair he owns and sends it to the receiver. Because of EPR pair entanglement swapping, the two photons in the receiver's hand entangled. Under the permission of the controller, the controller and the receiver measure their new EPR pairs in the Bell basis in turn. By comparing the measurement result of the receiver and the original state, the receiver can get the secret message. To ensure the security of the message transmitting, five photons of five-particle cluster state are all mixed in sending sequence to detect eavesdropping which can bring per qubit 88% eavesdropping detection probability. Compared with taking three photons of five-particle cluster state as detection photons, five photons in this paper will decrease the number of five-particle cluster state for detection greatly. The security of the present protocol is discussed: the detection probability of this protocol is more than 88%, and intercept-measure-resend attacks and correlation-elicitation (CE) attack can be defended effectively.
机译:为了传输安全消息,基于五粒子簇状态和EPR对缠结交换提出了一种受控量子安全直接通信协议。发件人和控制器分别拥有其EPR对序列。发件人发送epr对的一个光子,他拥有控制器。控制器随机执行本地酉操作,在其拥有的EPR对的一个光子上,并将其发送到接收器作为他的许可。发件人在EPR对的另一个光子上编码他的秘密消息,他拥有并将其发送到接收器。由于EPR对缠结交换,接收器的手中的两个光子缠结。在控制器的许可下,控制器和接收器依次以贝尔的基础测量其新的EPR对。通过比较接收器和原始状态的测量结果,接收器可以获得秘密消息。为了确保消息发送的安全性,五个粒子簇状态的五个光子全部在发送序列中混合以检测窃听,该窃听可以通过戒烟88%窃听检测概率。与检测光子的三个五粒子聚类状态的三个光子相比,本文中的五个光子将大大降低检测的五粒子簇状态的数量。讨论了本协议的安全性:该协议的检测概率超过88%,并且可以有效地保护拦截测量攻击和相关射击(CE)攻击。

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