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An efficient quantum key distribution scheme based on optical quantum state fusion and fission

机译:一种基于光量子态融合和裂变的高效量子密钥分配方案

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A new quantum key distribution (QKD) scheme, based on quantum state fusion and fission, is proposed. By using quantum state fusion and a spatial-temporal mode conversion circuit, two polarization modes of two photons can be converted into one temporal-polarization mode of one photon. Also, by using quantum state fission and a temporal-spatial mode conversion circuit one temporal-polarization mode of one photon can be converted into two polarization modes of two photons with the help of an ancilla photon. When the state fusion and fission processes are applied in QKD system, the sender can transmit two polarization qubits at one time and the receiver detects two single photons separately after state fission. Thus, the total count rate of photons is improved. More importantly, the quantum bit error rate decreases. The numerical analysis results show that by using this scheme the key generation rate is improved efficiently and communication distance can be increased by 6~30Km depending on different polarization misalignment errors.
机译:提出了一种基于量子融合和裂变的新量子密钥分布(QKD)方案。通过使用量子状态熔合和空间模式转换电路,可以将两个光子的两个偏振模式转换成一个光子的一个时间偏振模式。而且,通过使用量子源裂变和时间空间模式转换电路,在Ancilla光子的帮助下,可以将一个光子的一个时间偏振模式转换成两个光子的两个偏振模式。当在QKD系统中应用状态融合和裂变过程时,发件人可以一次发送两个极化QUBITS,并且接收器在状态裂变之后单独检测两个单个光子。因此,改善了光子的总计数率。更重要的是,量子钻头错误率降低。数值分析结果表明,通过使用该方案,有效提高密钥生成率,并且根据不同的偏振错位误差,可以提高通信距离6〜30km。

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