Direct and full-scale experimental verifications towards ground-satellite quantum key distribution
Abstract
Quantum key distribution (QKD), provides the only intrinsically unconditional secure method for communication based on principle of quantum mechanics. Compared with fiber-based demonstrations-, free-space links could provide the most appealing solution for much larger distance. Despite of significant efforts, so far all realizations rely on stationary sites. Justifications are therefore extremely crucial for applications via a typical Low Earth Orbit Satellite (LEOS). To achieve direct and full-scale verifications, we demonstrate here three independent experiments with a decoy-state QKD system overcoming all the demanding conditions. The system is operated in a moving platform through a turntable, a floating platform through a hot-air balloon, and a huge loss channel, respectively, for substantiating performances under rapid motion, attitude change, vibration, random movement of satellites and in high-loss regime. The experiments cover expanded ranges for all the leading parameters of LEOS. Our results pave the way towards ground-satellite QKD and global quantum communication network.
Keywords
Cite
@article{arxiv.1210.7556,
title = {Direct and full-scale experimental verifications towards ground-satellite quantum key distribution},
author = {Jian-Yu Wang and Bin Yang and Sheng-Kai Liao and Liang Zhang and Qi Shen and Xiao-Fang Hu and Jin-Cai Wu and Shi-Ji Yang and Hao Jiang and Yan-Lin Tang and Bo Zhong and Hao Liang and Wei-Yue Liu and Yi-Hua Hu and Yong-Mei Huang and Bo Qi and Ji-Gang Ren and Ge-Sheng Pan and Juan Yin and Jian-Jun Jia and Yu-Ao Chen and Kai Chen and Chen-Zhi Peng and Jian-Wei Pan},
journal= {arXiv preprint arXiv:1210.7556},
year = {2015}
}
Comments
17 pages, 3 figures, 2 tables