Mo Xiao-Fan, Zhu Bing, Han Zheng-Fu, Gui You-Zhen, Guo Guang-Can
Key Lab of Quantum Information, University of Science and Technology of China, Hefei Anhui 230026, China.
Opt Lett. 2005 Oct 1;30(19):2632-4. doi: 10.1364/ol.30.002632.
Quantum key distribution provides unconditional security for communication. Unfortunately, current experimental schemes are not suitable for long-distance fiber transmission because of phase drift or Rayleigh backscattering. In this Letter we present a unidirectional intrinsically stable scheme that is based on Michelson-Faraday interferometers, in which ordinary mirrors are replaced with 90 degree Faraday mirrors. With the scheme, a demonstration setup was built and excellent stability of interference fringe visibility was achieved over a fiber length of 175 km. Through a 125 km long commercial communication fiber cable between Beijing and Tianjin, the key exchange was performed with a quantum bit-error rate of less than 6%, which is to our knowledge the longest reported quantum key distribution experiment under field conditions.
量子密钥分发为通信提供无条件安全性。不幸的是,由于相位漂移或瑞利背向散射,当前的实验方案不适用于长距离光纤传输。在本信函中,我们提出了一种基于迈克尔逊 - 法拉第干涉仪的单向固有稳定方案,其中普通镜子被90度法拉第镜所取代。利用该方案搭建了演示装置,在175公里的光纤长度上实现了干涉条纹可见度的出色稳定性。通过北京和天津之间125公里长的商用通信光缆,进行了量子密钥交换,量子误码率低于6%,据我们所知,这是已报道的现场条件下最长的量子密钥分发实验。