Max-Planck-Institut für Quantenoptik, Hans-Kopfermann-Strasse 1, 85748 Garching, Germany.
Phys Rev Lett. 2013 Sep 13;111(11):110801. doi: 10.1103/PhysRevLett.111.110801. Epub 2013 Sep 12.
To compare the increasing number of optical frequency standards, highly stable optical signals have to be transferred over continental distances. We demonstrate optical-frequency transfer over a 1840-km underground optical fiber link using a single-span stabilization. The low inherent noise introduced by the fiber allows us to reach short term instabilities expressed as the modified Allan deviation of 2×10(-15) for a gate time τ of 1 s reaching 4×10(-19) in just 100 s. We find no systematic offset between the sent and transferred frequencies within the statistical uncertainty of about 3×10(-19). The spectral noise distribution of our fiber link at low Fourier frequencies leads to a τ(-2) slope in the modified Allan deviation, which is also derived theoretically.
为了比较不断增加的光学频率标准,必须将高度稳定的光学信号传输到大陆距离。我们通过单个跨度稳定来演示使用单跨光纤链路传输光频。光纤引入的固有噪声低,使我们达到了短期不稳定性,用修正的 Allan 偏差表示,在 1 秒的门时间 τ 下为 2×10(-15),在 100 秒内达到 4×10(-19)。在约 3×10(-19)的统计不确定性内,我们在发送和传输频率之间没有发现系统偏移。我们的光纤链路在低傅里叶频率下的光谱噪声分布导致修正的 Allan 偏差中的 τ(-2)斜率,这也是从理论上推导出来的。