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基于电信光纤网络的萨格纳克秘密共享

Sagnac secret sharing over telecom fiber networks.

作者信息

Bogdanski Jan, Ahrens Johan, Bourennane Mohamed

机构信息

Department of Physics, Stockholm University, S-10961 Stockholm, Sweden.

出版信息

Opt Express. 2009 Jan 19;17(2):1055-63. doi: 10.1364/oe.17.001055.

Abstract

We report the first Sagnac quantum secret sharing (in three-and four-party implementations) over 1550 nm single mode fiber (SMF) networks, using a single qubit protocol with phase encoding. Our secret sharing experiment has been based on a single qubit protocol, which has opened the door to practical secret sharing implementation over fiber telecom channels and in free-space. The previous quantum secret sharing proposals were based on multiparticle entangled states, difficult in the practical implementation and not scalable. Our experimental data in the three-party implementation show stable (in regards to birefringence drift) quantum secret sharing transmissions at the total Sagnac transmission loop distances of 55-75 km with the quantum bit error rates (QBER) of 2.3-2.4% for the mean photon number micro?= 0.1 and 1.7-2.1% for micro= 0.3. In the four-party case we have achieved quantum secret sharing transmissions at the total Sagnac transmission loop distances of 45-55 km with the quantum bit error rates (QBER) of 3.0-3.7% for the mean photon number micro= 0.1 and 1.8-3.0% for micro?= 0.3. The stability of quantum transmission has been achieved thanks to our new concept for compensation of SMF birefringence effects in Sagnac, based on a polarization control system and a polarization insensitive phase modulator. The measurement results have showed feasibility of quantum secret sharing over telecom fiber networks in Sagnac configuration, using standard fiber telecom components.

摘要

我们报告了首个在1550纳米单模光纤(SMF)网络上实现的Sagnac量子秘密共享(三方和四方实现方式),采用了具有相位编码的单量子比特协议。我们的秘密共享实验基于单量子比特协议,这为通过光纤电信信道和自由空间实现实际的秘密共享打开了大门。先前的量子秘密共享方案基于多粒子纠缠态,在实际实现中困难重重且无法扩展。我们在三方实现方式中的实验数据表明,在总Sagnac传输环路距离为55 - 75千米时,量子秘密共享传输稳定(相对于双折射漂移),对于平均光子数$\mu = 0.1$,量子比特误码率(QBER)为2.3 - 2.4%,对于$\mu = 0.3$,QBER为1.7 - 2.1%。在四方情况下,我们在总Sagnac传输环路距离为45 - 55千米时实现了量子秘密共享传输,对于平均光子数$\mu = 0.1$,量子比特误码率(QBER)为3.0 - 3.7%,对于$\mu = 0.3$,QBER为1.8 - 3.0%。由于我们基于偏振控制系统和偏振不敏感相位调制器的用于补偿Sagnac中SMF双折射效应的新概念,实现了量子传输的稳定性。测量结果表明,使用标准光纤电信组件,在Sagnac配置的电信光纤网络上进行量子秘密共享是可行的。

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