卫星
量子纠缠
光子纠缠
遥感
光子
分布(数学)
环境科学
物理
地理
天文
光学
量子力学
数学
量子
数学分析
作者
Juan Yin,Yuan Cao,Yu-Huai Li,Sheng‐Kai Liao,Liang Zhang,Ji-Gang Ren,Wenqi Cai,Wei-Yue Liu,Bo Li,Hui Dai,Guang-Bing Li,Qiming Lu,Yun-Hong Gong,Yu Xu,Shuang-Lin Li,Fengzhi Li,Ya-Yun Yin,Zi-Qing Jiang,Ming Li,Jianjun Jia
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2017-06-16
卷期号:356 (6343): 1140-1144
被引量:1406
标识
DOI:10.1126/science.aan3211
摘要
Long-distance entanglement distribution is essential for both foundational tests of quantum physics and scalable quantum networks. Owing to channel loss, however, the previously achieved distance was limited to ~100 kilometers. Here we demonstrate satellite-based distribution of entangled photon pairs to two locations separated by 1203 kilometers on Earth, through two satellite-to-ground downlinks with a summed length varying from 1600 to 2400 kilometers. We observed a survival of two-photon entanglement and a violation of Bell inequality by 2.37 ± 0.09 under strict Einstein locality conditions. The obtained effective link efficiency is orders of magnitude higher than that of the direct bidirectional transmission of the two photons through telecommunication fibers.
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