Shibata Hiroyuki, Honjo Toshimori, Shimizu Kaoru
Opt Lett. 2014 Sep 1;39(17):5078-81. doi: 10.1364/OL.39.005078.
We report the first quantum key distribution (QKD) experiment over a 72 dB channel loss using superconducting nanowire single-photon detectors (SSPD, SNSPD) with the dark count rate (DCR) of 0.01 cps. The DCR of the SSPD, which is dominated by the blackbody radiation at room temperature, is blocked by introducing cold optical bandpass filter. We employ the differential phase shift QKD (DPS-QKD) scheme with a 1 GHz system clock rate. The quantum bit error rate (QBER) below 3% is achieved when the length of the dispersion shifted fiber (DSF) is 336 km (72 dB loss), which is low enough to generate secure keys.
我们报告了首次使用暗计数率(DCR)为0.01 cps的超导纳米线单光子探测器(SSPD,SNSPD)在72 dB信道损耗上进行的量子密钥分发(QKD)实验。SSPD的DCR主要由室温下的黑体辐射主导,通过引入冷光带通滤波器来阻断。我们采用了具有1 GHz系统时钟速率的差分相移QKD(DPS-QKD)方案。当色散位移光纤(DSF)长度为336 km(72 dB损耗)时,量子误码率(QBER)低于3%,这一误码率低到足以生成安全密钥。