Deng Nan, Liu Zhangweiyi, Wang Xiaocheng, Fu Tiantian, Xie Weilin, Dong Yi
Opt Express. 2018 Jan 8;26(1):339-346. doi: 10.1364/OE.26.000339.
We report a long-distance phase-stabilized millimeter-wave distribution over optical fibers, where the optical-link-induced phase noise is compensated with a high-precision photonic-generated millimeter-wave (mm-wave) voltage-controlled oscillator (VCO). The mm-wave VCO is realized based on pre-filtering and re-modulating optical spectral lines of an optical frequency comb (OFC). By adjusting the frequency spacing of the optical spectral lines extracted from the OFC, the phase error of the transmitted optical mm-wave signal can be compensated precisely. Using the mm-wave VCO, we demonstrate a distribution of a 100.02 GHz signal over spooled optical fibers and the fractional frequency instability of the system at different transmission distances is exhibited. The residual phase noise of the remote mm-wave signal after being transferred through a 160-km fiber link is measured to be -59 dBc/Hz at 1 Hz frequency offset from the carrier, and the RMS timing jitter in the frequency range from 0.01 Hz to 1 MHz reaches 62 fs. The long-term fractional frequency instability of 4.1 × 10 at 10000 s averaging time is achieved, and the maximum timing drift is within 0.93 ps (peak to peak) during 4 hours.
我们报道了一种通过光纤实现的长距离相位稳定毫米波分布,其中利用高精度光子产生的毫米波压控振荡器(VCO)补偿光链路引起的相位噪声。毫米波VCO基于对光频梳(OFC)的光谱线进行预滤波和重新调制来实现。通过调整从OFC提取的光谱线的频率间隔,可以精确补偿传输的光毫米波信号的相位误差。利用毫米波VCO,我们展示了100.02 GHz信号在盘绕光纤上的分布,并展示了系统在不同传输距离下的分数频率不稳定性。经测量,远程毫米波信号通过160公里光纤链路传输后的残余相位噪声在相对于载波1 Hz频率偏移处为-59 dBc/Hz,在0.01 Hz至1 MHz频率范围内的均方根定时抖动达到62 fs。在10000 s平均时间内实现了4.1×10的长期分数频率不稳定性,并且在4小时内最大定时漂移在0.93 ps(峰峰值)以内。