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A two-dimensional quantum key distribution protocol based on polarization-phase encoding

机译:一种基于极化相位编码的二维量子密钥分布协议

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摘要

In this paper, we introduce a new quantum key distribution protocol, which we refer to as polarization-phase (PoP) protocol. In this protocol, two degrees of photonic freedom of the same particle in a hybrid manner are used to encode the information in the format of two- or high-dimensional quantum states (qubits and qudits, respectively). Here, we only discuss the qubit version of the general PoP protocol (we refer to two-dimensional PoP (TD-PoP) protocol) as an interesting extension for the standard BB84 protocol. We investigate the performance of the TD-PoP protocol using infinite-key analysis against restricted individual attacks, i.e. the intercept-resend and photon number splitting attacks, in both ideal single-photon and Poisson (attenuated laser) sources. In addition, we demonstrate that this protocol, despite using two physical dimensions, is simple and fully has empirical implementation capability. Ability to extract two bits of information from each detection event, and increasing the sifting parameter, the secure key rate, and the likelihood of detection of an eavesdropper, are the advantages of the TD-PoP protocol compared to the standard polarization- or phase-encoded BB84 protocol.
机译:在本文中,我们介绍了一种新的量子密钥分布协议,我们称为偏振阶段(POP)协议。在该方案中,以混合方式的相同粒子的两度光子自由度用于编码以两维或高维量子状态的格式(分别Qubits和Qudits)编码信息。在这里,我们只讨论常规POP协议的Qubit版本(我们将二维POP(TD-POP)协议称为标准BB84协议的有趣扩展。我们研究了TD-POP协议的性能使用无限关键分析对受限制的单独攻击,即拦截重新发送和光子数分裂攻击,在理想的单光子和泊松(减毒激光)源中。此外,我们证明了这一协议尽管使用了两个物理尺寸,但简单且充分具有经验的实现能力。能够从每个检测事件中提取两位信息,并增加筛选参数,安全键速率以及检测窃听器的可能性,是TD-POP协议与标准偏振或相位相比的优点编码BB84协议。

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