论文标题

将本地振荡器用于卫星至地球通道

Use of a Local Local Oscillator for the Satellite-to-Earth Channel

论文作者

Kish, Sebastian, Villaseñor, Eduardo, Malaney, Robert, Mudge, Kerry, Grant, Kenneth

论文摘要

连续变量量子密钥分布(CV-QKD)提供了两个当事方之间的信息理论安全密钥共享。相位参考框架的共享是CV-QKD中相干检测的重要要求。由于可能与量子信号一起传输局部振荡器(LO)的潜在攻击,因此一直着重于使用局部LOS(LLOS)建立共享相位参考。在这项工作中,我们在卫星至地球通道的背景下开发了当前最新LLO方案的新噪声模型。在此过程中,我们封装了确定相干效率的详细相屏幕计算 - 自由空间CV-QKD中的关键参数,该参数表征了由大气湍流引起的波前差。然后,使用我们的新噪声模型,我们确定卫星至地球通道的CV-QKD密钥速率,并在LLO方案的有限尺寸机制中确保在一般攻击下进行。我们的结果对于使用多光子技术而不是单光孔技术的下一代量子卫星至关重要。

Continuous variable quantum key distribution (CV-QKD) offers information-theoretic secure key sharing between two parties. The sharing of a phase reference frame is an essential requirement for coherent detection in CV-QKD. Due to the potential attacks related to transmitting the local oscillator (LO) alongside quantum signals, there has been a focus on using local LOs (LLOs) to establish a shared phase reference. In this work, we develop a new noise model of a current state-of-the-art LLO scheme in the context of the satellite-to-Earth channel. In doing this, we encapsulate detailed phase-screen calculations that determine the coherent efficiency - a critical parameter in free-space CV-QKD that characterizes the wavefront aberrations caused by atmospheric turbulence. Using our new noise model we then determine the CV-QKD key rates for the satellite-to-Earth channel, secure under general attacks in the finite-size regime of the LLO scheme. Our results are of practical importance for next-generation quantum-enabled satellites that utilize multi-photon technology as opposed to single-photon technology.

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