Kwon Dohyeon, Jeon Igju, Lee Won-Kyu, Heo Myoung-Sun, Kim Jungwon
School of Mechanical and Aerospace Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Korea.
Center for Time and Frequency, Korea Research Institute of Standards and Science (KRISS), Daejeon 34113, Korea.
Sci Adv. 2020 Mar 27;6(13):eaax4457. doi: 10.1126/sciadv.aax4457. eCollection 2020 Mar.
Frequency-stabilized optical frequency combs have created many high-precision applications. Accurate timing, ultralow phase noise, and narrow linewidth are prerequisites for achieving the ultimate performance of comb-based systems. Ultrastable cavity-based comb-noise stabilization methods have enabled sub-10-level frequency instability. However, these methods are complex and alignment sensitive, and their use has been mostly confined to advanced metrology laboratories. Here, we have established a simple, compact, alignment-free, and potentially low-cost all-fiber photonics-based stabilization method for generating multiple ultrastable combs. The achieved performance includes 1-femtosecond timing jitter, few times 10-level frequency instability, and <5-hertz linewidth, rivalling those of cavity-stabilized combs. This method features flexibility in configuration: As a representative example, two combs were stabilized with 180-hertz repetition rate difference and ~1-hertz relative linewidth and could be used as an ultrastable, octave-spanning dual-comb spectroscopy source. The demonstrated method constitutes a mechanically robust and reconfigurable tool for generating multiple ultrastable combs suitable for field applications.
频率稳定的光学频率梳已经催生了许多高精度应用。精确的定时、超低相位噪声和窄线宽是实现基于频率梳的系统的终极性能的先决条件。基于超稳定腔的梳状噪声稳定方法已实现了低于10^-9水平的频率不稳定性。然而,这些方法复杂且对对准敏感,其应用大多局限于先进的计量实验室。在此,我们建立了一种简单、紧凑、无需对准且可能低成本的基于全光纤光子学的稳定方法,用于产生多个超稳定频率梳。所实现的性能包括1飞秒的定时抖动、几次10^-9水平的频率不稳定性和小于5赫兹的线宽,可与腔稳定频率梳相媲美。该方法在配置上具有灵活性:作为一个典型例子,两个频率梳以180赫兹的重复率差和约1赫兹的相对线宽实现了稳定,并且可以用作超稳定的、倍频程跨度的双频梳光谱源。所展示的方法构成了一种机械坚固且可重构的工具,用于产生多个适用于现场应用的超稳定频率梳。