论文标题
空间测量设备无关的量子键分布的可行性
Feasibility of space-based measurement-device-independent quantum key distribution
论文作者
论文摘要
测量设备独立的(MDI)QKD被认为是克服当前可信赖的卫星范式的替代方法。但是,在因素方面,空间基的MDI-QKD的可行性尚不清楚:地面站和卫星之间的高损失上行链路,当两个地面站同时可见时持续时间有限,并且在执行铃铛测量时对两光子干扰的严格要求(BSM)。在本文中,我们介绍了基于Micius卫星的空间MDI-QKD的可行性评估。与轨道动力学模型和大气通道模型集成在一起,提出了一个框架,以探索整个参数空间,包括轨道高度,高度角度,收发器的孔和大气湍流强度,以提高关键速度的考虑,并为实施基于空间的MDI-QKD实施相关参数。我们进一步研究了MDI-QKD的心脏,即对多普勒偏移的频率校准和时间同步技术,以及在动态和不对称通道中执行强度优化方法的方式。我们的工作可以用作探路者,以支持涉及未来量子通信卫星任务的决策。
The measurement-device-independent (MDI) QKD is considered to be an alternative to overcome the currently trusted satellite paradigm. However, the feasibility of the space-based MDI-QKD remains unclear in terms of the factors: the high-loss uplink between a ground station and a satellite, the limited duration when two ground stations are simultaneously visible, as well as the rigorous requirements for the two-photon interference when performing the Bell-state Measurement (BSM). In this paper, we present a feasibility assessment of space-based MDI-QKD based on the Micius satellite. Integrated with the orbital dynamics model and atmosphere channel model, a framework is presented to explore the whole parameters space including orbit height, elevation angle, apertures of transceiver and atmospheric turbulence intensity to give the considerations for improving key rates and subsequently provide a relevant parameter tradeoff for the implementation of space-based MDI-QKD. We further investigate the heart of MDI-QKD, the two-photon interference considerations such as the frequency calibration and time synchronization technology against Doppler shift, and the way of performing the intensity optimization method in the dynamic and asymmetric channels. Our work can be used as a pathfinder to support decisions involving as the selection of the future quantum communication satellite missions.