论文标题

窄线宽光频率梳子引用纤维延迟线

Narrow-linewidth optical frequency comb reference to a fiber delay line

论文作者

Tian, Haochen, Meng, Fei, Lin, Baike, Cao, Shiying, Fang, Zhanjun, Song, Youjian, Hu, Minglie

论文摘要

在这封信中,据我们所知,我们首次提到了一个完全稳定的窄线宽光学频率梳子(OFC)引用了长的纤维延迟线。 OFC中的1537 nm梳子模式和1566 nm的梳子模式与40 kHz锁定带宽相同至纤维延迟线。从环外测量值中,1542-nm梳子模式的残留相噪声为925 MRAD(从10 MHz到1 kHz集成),平均时间为12.8 ms的分数频率稳定性为9.13*10(-13)。与自由运行状况相比,线宽已被压缩约170倍。提出的OFC的短期稳定性超过了大多数商业微波振荡器。整个相锁系统都是紧凑的,并且由于缺乏光学放大器,F-2F干涉仪和光学/无线电参考而受益匪浅。介绍的OFC在基于低噪声的精确计量学,微波生成和双弯曲光谱应用中显示出可靠激光源的显着潜力。

In this letter, we derive a fully-stabilized narrow-linewidth optical frequency comb (OFC) reference to a kilometer-long fiber delay line for the first time, to the best of our knowledge. The 1537-nm comb modes and 1566-nm comb modes in the OFC are phase-locked to the fiber delay line with 40-kHz locking bandwidth. From out-of-loop measurement, the 1542-nm comb mode has residual phase noise of 925 mrad (integrated from 10 MHz to 1 kHz), fractional frequency stability of 9.13*10(-13) at 12.8 ms average time and 580 Hz linewidth. The linewidth has been compressed by a factor of ~ 170 compared to the free-running condition. Short-term stability of presented OFC exceeds most commercial microwave oscillators. The entire phase-locking system is compact and highly-integrated benefiting from absence of optical amplifiers, f-2f interferometers and optical/radio references. The presented OFC shows significant potential of being reliable laser source in low-noise-OFC-based precise metrology, microwave generation and dual-comb spectroscopic applications outside the laboratory.

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