量子信息科学
量子退相干
量子信道
频道(广播)
物理
光子学
量子网络
量子
量子成像
分束器
量子传感器
光子
计算机科学
传输(电信)
量子力学
拓扑(电路)
量子信息
激光器
电信
数学
量子纠缠
组合数学
作者
L.-M. Duan,Mikhail D. Lukin,J. I. Cirac,P. Zoller
出处
期刊:Nature
[Springer Nature]
日期:2001-11-01
卷期号:414 (6862): 413-418
被引量:3044
摘要
Quantum communication holds a promise for absolutely secure transmission of secret messages and faithful transfer of unknown quantum states. Photonic channels appear to be very attractive for physical implementation of quantum communication. However, due to losses and decoherence in the channel, the communication fidelity decreases exponentially with the channel length. We describe a scheme that allows to implement robust quantum communication over long lossy channels. The scheme involves laser manipulation of atomic ensembles, beam splitters, and single-photon detectors with moderate efficiencies, and therefore well fits the status of the current experimental technology. We show that the communication efficiency scale polynomially with the channel length thereby facilitating scalability to very long distances.
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