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Photonic spatial Bell-state analysis for robust quantum secure direct communication using quantum dot-cavity systems

机译:使用量子点腔系统的鲁棒量子安全直接通信的光子空间钟形分析

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摘要

Recently, experiments showed that the spatial-mode states of entangled photons are more robust than their polarization-mode states in quantum communications. Here, we construct a complete and deterministic protocol for analyzing the spatial Bell states using the interaction between a photon and an electron spin in a charged quantum dot inside a one-side micropillar microcavity. A quantum nondemolition detector (QND) for checking the parity of a two-photon system can be constructed with the giant optical Faraday rotation in this solid state system. With this parity-check QND, we present a complete and deterministic proposal for the analysis of the four spatial-mode Bell states. Moreover, we present a robust two-step quantum secure direct communication protocol based on the spatial-mode Bell states and the photonic spatial Bell-state analysis. Our analysis shows that our BSA proposal works in both the strong and the weak coupling regimes if the side leakage and cavity loss rate is small.
机译:最近,实验表明,纠缠光子的空间模式状态在量子通信中比其偏振模式状态更健壮。在这里,我们构建了一个完整的确定性协议,该协议使用单侧微柱微腔内部带电量子点中的光子和电子自旋之间的相互作用来分析空间贝尔状态。可以在此固态系统中通过巨大的法拉第旋光来构造用于检查双光子系统奇偶性的量子非爆破检测器(QND)。借助此奇偶校验QND,我们提出了用于分析四个空间模式贝尔状态的完整且确定性的建议。此外,我们提出了基于空间模式贝尔状态和光子空间贝尔状态分析的鲁棒两步量子安全直接通信协议。我们的分析表明,如果侧面泄漏和空腔损耗率较小,我们的BSA提议可在强耦合和弱耦合两种情况下均起作用。

著录项

  • 来源
    《The European Physical Journal D 》 |2013年第2期| 1-8| 共8页
  • 作者单位

    Department of Physics Applied Optics Beijing Area Major Laboratory Beijing Normal University">(1463);

    Department of Physics Applied Optics Beijing Area Major Laboratory Beijing Normal University">(1463);

    Department of Physics Applied Optics Beijing Area Major Laboratory Beijing Normal University">(1463);

    Department of Physics Applied Optics Beijing Area Major Laboratory Beijing Normal University">(1463);

    Department of Physics Applied Optics Beijing Area Major Laboratory Beijing Normal University">(1463);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Quantum Information;

    机译:量子信息;

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