Quantum key distribution with setting-choice-independently correlated light sources

Akihiro Mizutani*, Go Kato, Koji Azuma, Marcos Curty, Rikizo Ikuta, Takashi Yamamoto, Nobuyuki Imoto, Hoi Kwong Lo, Kiyoshi Tamaki

*この論文の責任著者

研究成果: ジャーナルへの寄稿学術論文査読

30 被引用数 (Scopus)

抄録

Despite the enormous theoretical and experimental progress made so far in quantum key distribution (QKD), the security of most existing practical QKD systems is not rigorously established yet. A critical obstacle is that almost all existing security proofs make ideal assumptions on the QKD devices. Problematically, such assumptions are hard to satisfy in the experiments, and therefore it is not obvious how to apply such security proofs to practical QKD systems. Fortunately, any imperfections and security-loopholes in the measurement devices can be perfectly closed by measurement-device-independent QKD (MDI-QKD), and thus we only need to consider how to secure the source devices. Among imperfections in the source devices, correlations between the sending pulses and modulation fluctuations are one of the principal problems, which unfortunately most of the existing security proofs do not consider. In this paper, we take into account these imperfections and enhance the implementation security of QKD. Specifically, we consider a setting-choice-independent correlation (SCIC) framework in which the sending pulses can present arbitrary correlations but they are independent of the previous setting choices such as the bit, the basis and the intensity settings. Within the framework of SCIC, we consider the dominant fluctuations of the sending states, such as the relative phases and the intensities, and provide a self-contained information-theoretic security proof for the loss-tolerant QKD protocol in the finite-key regime. We demonstrate the feasibility of secure quantum communication, and thus our work constitutes a crucial step towards guaranteeing the security of practical QKD systems.

本文言語英語
論文番号8
ジャーナルnpj Quantum Information
5
1
DOI
出版ステータス出版済み - 2019/12/01

ASJC Scopus 主題領域

  • コンピュータ サイエンス(その他)
  • 統計物理学および非線形物理学
  • コンピュータ ネットワークおよび通信
  • 計算理論と計算数学

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