Takesue Hiroki, Harada Ken-Ichi, Tamaki Kiyoshi, Fukuda Hiroshi, Tsuchizawa Tai, Watanabe Toshifumi, Yamada Koji, Itabashi Sei-Ichi
NTT Basic Research Laboratories, NTT Corporation, 3-1 Morinosato Wakamiya, Atsugi, Kanagawa, 243-0198, Japan.
Opt Express. 2010 Aug 2;18(16):16777-87. doi: 10.1364/OE.18.016777.
We report an entanglement-based quantum key distribution experiment that we performed over 100 km of optical fiber using a practical source and detectors. We used a silicon-based photon-pair source that generated high-purity time-bin entangled photons, and high-speed single photon detectors based on InGaAs/InP avalanche photodiodes with the sinusoidal gating technique. To calculate the secure key rate, we employed a security proof that validated the use of practical detectors. As a result, we confirmed the successful generation of sifted keys over 100 km of optical fiber with a key rate of 4.8 bit/s and an error rate of 9.1%, with which we can distill secure keys with a key rate of 0.15 bit/s.
我们报告了一项基于纠缠的量子密钥分发实验,该实验使用实用的光源和探测器在100公里长的光纤上进行。我们使用了一个基于硅的光子对源,它能产生高纯度的时间-bin纠缠光子,以及基于InGaAs/InP雪崩光电二极管并采用正弦门控技术的高速单光子探测器。为了计算安全密钥率,我们采用了一种安全证明,该证明验证了实用探测器的使用。结果,我们确认在100公里长的光纤上成功生成了筛选密钥,密钥率为4.8比特/秒,误码率为9.1%,利用这些我们可以以0.15比特/秒的密钥率提取安全密钥。