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量子传输和纠分布在100公里的自由空间通道上
1Shanghai Branch, National Laboratory for Physical Sciences at Microscale and Department of Modern Physics, University of Science and Technology of China, Shanghai 201315, China.
Nature
|August 10, 2012
概括
研究人员使用自由空间通道实现了独立量子比特在97公里外的量子传输. 这一突破推动了安全的量子通信和分布式量子网络,为全球量子系统铺平了道路.
科学领域:
- 量子物理学的量子物理学
- 量子通信是一种量子通信.
- 量子信息科学是一种量子信息科学.
背景情况:
- 量子状态转移对于量子网络至关重要.
- 光纤面临着诸如光子损失和脱凝等局限性.
- 自由空间通道为远距离量子通信提供了一个有希望的替代方案.
研究的目的:
- 为了证明独立量子比特在97公里的自由空间通道上的量子传输.
- 为了在跨越101.8公里的双链通道上实现纠分布.
- 推进全球量子网络和基于卫星的量子通信的发展.
主要方法:
- 利用多光子纠来实现量子远程传输.
- 采用97公里的单环自由空间通道进行量子比特传输.
- 在双链路通道上展示了纠分布.
- 实施了一种高频,高精度的采集,指向和跟踪技术.
主要成果:
- 实现了独立量子比特的量子传输,平均保真度为6个不同的状态的80.4%±0.9%.
- 通过双链路通道,成功地将纠分布在总距离为101.8公里的距离上.
- 观察到克劳泽-霍恩-西蒙尼-霍尔特不等式的违反,证实了没有局部漏洞的量子相关性.
结论:
- 这些结果代表了建设全球量子网络的重大进展.
- 开发的指针和跟踪技术适合未来基于卫星的量子通信.
- 这项工作为大规模量子力学的基本测试做出了贡献.
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