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Measurement device-independent quantum key distribution with heralded pair coherent state

机译:具有预言对相干态的与测量设备无关的量子密钥分配

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The original measurement device-independent quantum key distribution is reviewed, and a modified protocol using heralded pair coherent state (HPCS) is proposed to overcome the quantum bit error rate associated with the dark count rate of the detectors in long-distance quantum key distribution. Our simulation indicates that the secure transmission distance can be improved evidently with HPCS owing to the lower probability of vacuum events when compared with weak coherent source scenario, while the secure key rate can be increased with HPCS due to the higher probability of single-photon events when compared with heralded single-photon source scenario. Furthermore, we apply the finite key analysis to the decoy state MDI-QKD with HPCS and obtain a practical key rate.
机译:审查了原始的与测量设备无关的量子密钥分布,并提出了一种使用先驱对相干态(HPCS)的改进协议,以克服与长距离量子密钥分布中的探测器暗计数率相关的量子误码率。我们的仿真表明,与弱相干源场景相比,由于真空事件的概率较低,因此使用HPCS可以显着改善安全传输距离,而由于单光子事件的概率较高,因此可以使用HPCS提高安全密钥传输率与预告的单光子源方案相比。此外,我们将有限密钥分析应用于具有HPCS的诱饵状态MDI-QKD并获得实用的密钥率。

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