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Trojan Horse Attack Free Fault-Tolerant Quantum Key Distribution Protocols Using GHZ States

机译:使用GHZ状态的特洛伊木马无攻击容错量子密钥分发协议

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摘要

Recently, Yang and Hwang (Quantum Inf. Process. 13(3): 781-794, 19) proposed two fault-tolerant QKD protocols based on their proposed coding functions for resisting the collective noise, and their QKD protocols are free from Trojan horse attack without employing any specific detecting devices (e.g., photon number splitter (PNS) and wavelength filter). By using four-particle Greenberger-Horne-Zeilinger (GHZ) state and four-particle GHZ-like state in their proposed coding functions, Yang and Hwang's QKD protocols can resist each kind of the collective noise-collective-dephasing noise, collective-rotation noise. However, their proposed coding function can be improved by the utilization of three-particle GHZ state (three-particle GHZ-like state) instead of four-particle GHZ state (four-particle GHZ-like state) that will eventually reduce the consumption of the qubits. As a result, this study proposed the improved version of Yang and Hwang's coding functions to enhance the qubit efficiency of their schemes from 20 % to 22 %.
机译:最近,Yang和Hwang(Quantum Inf。Process。13(3):781-794,19)提出了两种容错QKD协议,它们基于它们提出的用于抵抗集体噪声的编码功能,并且它们的QKD协议没有特洛伊木马。无需使用任何特定的检测设备(例如,光子数分离器(PNS)和波长过滤器)就可以发起攻击。通过在建议的编码函数中使用四粒子Greenberger-Horne-Zeilinger(GHZ)状态和类四粒子GHZ类似状态,Yang和Hwang的QKD协议可以抵抗各种集体噪声-收集相移噪声,集体旋转噪声。但是,可以通过利用三粒子GHZ状态(三粒子GHZ类状态)而不是四粒子GHZ状态(四粒子GHZ类状态)来改善其建议的编码功能,这最终会减少量子位。结果,本研究提出了改进的Yang和Hwang编码功能版本,以将其方案的qubit效率从20%提高到22%。

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