Author Affiliations
Abstract
1 Information and Navigation College, Air Force Engineering University, Xi’an 710077, China
2 College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China
3 College of Computer and Science, National University of Defense Technology, Changsha 410073, China
4 Teaching and Research Support Center, National University of Defense Technology, Changsha 410073, China
Remarkable progress has been made in satellite-based quantum key distribution (QKD), which can effectively provide QKD service even at the intercontinental scale and construct an ultralong-distance global quantum network. But there are still some places where terrestrial fiber and ground stations cannot be constructed, like harsh mountainous areas and air space above the sea. So the airborne platform is expected to replace the ground station and provide flexible and relay links for the large-scale integrated communication network. However, the photon transmission rate would be randomly reduced, owing to the randomly distributed boundary layer that surrounds the surface of the aircraft when the flight speed is larger than 0.3 Ma. Previous research of airborne QKD with boundary layer effects is mainly under the air-to-ground scenario in which the aircraft is a transmitter, while the satellite-to-aircraft scenario is rarely reported. In this article, we propose a performance evaluation scheme of satellite-to-aircraft QKD with boundary layer effects in which the aircraft is the receiver. With common experimental settings, the boundary layer would introduce a 31 dB loss to the transmitted photons, decrease 47% of the quantum communication time, and decrease 51% of the secure key rate, which shows that the aero-optical effects caused by the boundary layer cannot be ignored. Our study can be performed in future airborne quantum communication designs.
satellite-to-aircraft quantum key distribution boundary layer aero-optical effects 
Chinese Optics Letters
2023, 21(4): 042702
唐杰 石磊 ***魏家华 **于惠存 *[ ... ]薛阳 
作者单位
摘要
空军工程大学信息与导航学院, 陕西 西安 710077
近年来,如何消除量子通信中集体噪声的影响已成为一个亟待解决的问题。针对目前免疫集体噪声的量子密钥协商协议的量子比特效率偏低问题,分别提出了两个改进的免疫集体相位噪声和集体旋转噪声的量子密钥协商协议。这两个协议主要利用逻辑量子态、延迟测量技术、幺正操作和多粒子纠缠态的相关性,确保通信双方能够公平地建立一个共享密钥。协议的量子比特效率高达27.27%,有效改进了现有免疫集体噪声的量子密钥协商协议。
量子光学 量子通信 量子密钥协商 集体噪声 量子比特效率 
激光与光电子学进展
2020, 57(17): 172703

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