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Phase encoding schemes for measurement-device-independent quantum key distribution with basis-dependent flaw

机译:具有基于相关缺陷的与测量设备无关的量子密钥分配的相位编码方案

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摘要

In this paper, we study the unconditional security of the so-called measurement-device-independent quantum key distribution (MDIQKD) with the basis-dependent flaw in the context of phase encoding schemes. We propose two schemes for the phase encoding: The first one employs a phase locking technique with the use of non-phase-randomized coherent pulses, and the second one uses conversion of standard Bennett-Brassard 1984 (BB84) phase encoding pulses into polarization modes. We prove the unconditional security of these schemes and we also simulate the key generation rate based on simple device models that accommodate imperfections. Our simulation results show the feasibility of these schemes with current technologies and highlight the importance of the state preparation with good fidelity between the density matrices in the two bases. Since the basis-dependent flaw is a problem not only for MDIQKD but also for standard quantum key distribution (QKD), our work highlights the importance of an accurate signal source in practical QKD systems. © 2012 American Physical Society.
机译:在本文中,我们研究了在相位编码方案中具有基础依赖缺陷的所谓与测量设备无关的量子密钥分配(MDIQKD)的无条件安全性。对于相位编码,我们提出了两种方案:第一种采用非锁相相干脉冲的锁相技术,第二种采用标准Bennett-Brassard 1984(BB84)相位编码脉冲转换为极化模式的方案。 。我们证明了这些方案的无条件安全性,并且还基于适应缺陷的简单设备模型来模拟密钥生成率。我们的仿真结果显示了使用当前技术的这些方案的可行性,并强调了在两个基地的密度矩阵之间具有良好保真度的状态准备的重要性。由于依赖于基础的缺陷不仅是MDIQKD的问题,也是标准量子密钥分发(QKD)的问题,所以我们的工作强调了在实际QKD系统中准确信号源的重要性。 ©2012美国物理学会。

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