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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Efficient quantum private queries based on quantum key distribution with pulse-position modulation
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Efficient quantum private queries based on quantum key distribution with pulse-position modulation

机译:基于量子密钥分布的脉冲位置调制有效量子私有查询

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摘要

Up to now, there are only a few studies on the application of pulse position modulation (PPM) and orbital angular momentum (OAM) in measurement-device-independent (MDI) quantum private queries (QPQ) protocols. Given this, we design a QPQ protocol based on PPM-OAM and MDI-QKD (quantum key distribution), i.e. PPM-OAM-MDI-QPQ protocol, which avoids the dependence of the basis besides inheriting the advantages of MDI-QPQ. Our PPM-OAM-MDI-QPQ protocol can achieve longer-distance QPQ and speed up private queries. Moreover, our PPM-OAM-MDI-QPQ protocol can eliminate the basis-dependent flaw and demonstrate a useful technique for high-rate satellite-based QPQ. Meanwhile, our protocol applies quantum memory to achieve the function of a quantum repeater, achieving much longer-distance QPQ.
机译:到目前为止,只有少数关于在测量 - 设备无关(MDI)量子私有查询(QPQ)协议中的脉冲位置调制(PPM)和轨道角动量(OAM)的应用。 鉴于此,我们根据PPM-OAM和MDI-QKD(Quantum密钥分布),即PPM-OAM-MDI-QPQ协议设计了一种QPQ协议,除了继承MDI-QPQ的优势,避免了依据的依赖。 我们的PPM-OAM-MDI-QPQ协议可以实现更长距离QPQ并加快私人查询。 此外,我们的PPM-OAM-MDI-QPQ协议可以消除基础依赖的缺陷,并证明了一种基于高速卫星的QPQ的有用技术。 同时,我们的协议适用量子存储器来实现量子中继器的功能,实现更长距离QPQ。

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