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Quantum Key Distribution (QKD) using LEO and MEO satellites and decoy states

机译:Quantum密钥分布(QKD)使用Leo和Meo卫星和诱饵状态

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We have analyzed the feasibility of performing Quantum Key Distribution (QKD), in earth-satellite and intersatellite links, with four quantum cryptography protocols: BB84 and SARG04 with and without decoy states. In order to facilitate the protocols comparison we have computed the rates using the optimal mean photon number for each protocol and for each distance. Furthermore, we have formulate a lower bound on the key generation rate of SARG04 with a finite number of decoy states, and we have obtained all numerical results using realistic values for optical hardware and accounting for realistic atmospheric effects. The results of the analysis indicate that the maximum rate and transmit distance are obtained when the proposed method is applied, and it is possible to establish QKD with LEO (Low Earth Orbit) and MEO (Medium Earth Orbit) satellites.
机译:我们已经分析了在地球卫星和梭技术链接中执行量子密钥分布(QKD)的可行性,其中四个量子密码协议:BB84和SARG04,没有诱饵状态。为了便于协议比较,我们使用每个协议的最佳平均光子编号和每个距离来计算速率。此外,我们用有限数量的诱饵状态制定了SARG04的关键生成率的下限,并且我们使用了光学硬件的现实值获得了所有数值结果,并考虑了现实的大气效应。分析结果表明当应用所提出的方法时获得最大速率和发射距离,并且可以使用Leo(低地球轨道)和MEO(中地球轨道)卫星建立QKD。

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