Hao Yanmei, Hu Ruming, Zhang Baolin, Zeng Mengyan, Zhang Huaqing, Ma Zixiao, Huang Yao, Chen Qunfeng, Gao Kelin, Guan Hua
Opt Express. 2024 Jan 29;32(3):4081-4092. doi: 10.1364/OE.509502.
The instability of the clock laser is one of the primary factors limiting the instability of the optical clocks. We present an ultra-stable clock laser based on a 30-cm-long transportable cavity with an instability of ∼3 × 10 at 1 s-100 s. The cavity is fixed by invar poles in three orthogonal directions to restrict the displacement, meeting the requirements of transportability and low vibration sensitivity. By applying the ultra-stable laser to a transportable Ca optical clock with a systematic uncertainty of 4.8 × 10 and using the real-time feedback algorithm to compensate the linear shift of the clock laser, the short-term stability of the transportable Ca optical clock has been greatly improved from 4.0×10//s to 1.16×10//s, measured at ∼100 s-1000 s of averaging time, enriching its applications in metrology, optical frequency comparison, and time keeping.
时钟激光器的不稳定性是限制光钟不稳定性的主要因素之一。我们展示了一种基于30厘米长可移动腔的超稳定时钟激光器,在1秒至100秒时其不稳定性约为3×10 。该腔通过因瓦磁极在三个正交方向上固定,以限制位移,满足可移动性和低振动敏感性的要求。通过将超稳定激光器应用于系统不确定度为4.8×10 的可移动钙光钟,并使用实时反馈算法补偿时钟激光器的线性漂移,可移动钙光钟的短期稳定性在约100秒至1000秒的平均时间测量时,从4.0×10//秒大幅提高到1.16×10//秒,丰富了其在计量学、光频比较和计时方面的应用。