Camenzind S L, Koenen D, Willenberg B, Pupeikis J, Phillips C R, Keller U
Opt Express. 2022 Feb 14;30(4):5075-5094. doi: 10.1364/OE.448274.
Pulse trains emitted from dual-comb systems are designed to have low relative timing jitter, making them useful for many optical measurement techniques such as optical ranging and spectroscopy. However, the characterization of low-jitter dual-comb systems is challenging because it requires measurement techniques with high sensitivity. Motivated by this challenge, we developed a technique based on an optical heterodyne detection approach for measuring the relative timing jitter of two pulse trains. The method is suitable for dual-comb systems with essentially any repetition rate difference. Furthermore, the proposed approach allows for continuous and precise tracking of the sampling rate. To demonstrate the technique, we perform a detailed characterization of a single-mode-diode pumped Yb:CaF dual-comb laser from a free-running polarization-multiplexed cavity. This new laser produces 115-fs pulses at 160 MHz repetition rate, with 130 mW of average power in each comb. The detection noise floor for the relative timing jitter between the two pulse trains reaches 8.0 × 10 fs/Hz (∼ 896 zs/Hz), and the relative root mean square (rms) timing jitter is 13 fs when integrating from 100 Hz to 1 MHz. This performance indicates that the demonstrated laser is highly compatible with practical dual-comb spectroscopy, ranging, and sampling applications. Furthermore, our results show that the relative timing noise measurement technique can characterize dual-comb systems operating in free-running mode or with finite repetition rate differences while providing a sub-attosecond resolution, which was not feasible with any other approach before.
双梳状系统发射的脉冲序列旨在具有低相对定时抖动,这使得它们适用于许多光学测量技术,如光学测距和光谱学。然而,低抖动双梳状系统的表征具有挑战性,因为它需要具有高灵敏度的测量技术。受此挑战的推动,我们开发了一种基于光学外差检测方法的技术,用于测量两个脉冲序列的相对定时抖动。该方法适用于具有基本上任何重复率差异的双梳状系统。此外,所提出的方法允许对采样率进行连续和精确的跟踪。为了演示该技术,我们对一个自由运行的偏振复用腔中的单模二极管泵浦Yb:CaF双梳状激光器进行了详细表征。这种新型激光器以160 MHz的重复率产生115飞秒的脉冲,每个梳状脉冲的平均功率为130 mW。两个脉冲序列之间相对定时抖动的检测本底噪声达到8.0×10飞秒/赫兹(约896仄秒/赫兹),当从100赫兹积分到1兆赫兹时,相对均方根(rms)定时抖动为13飞秒。这种性能表明,所演示的激光器与实际的双梳状光谱学、测距和采样应用高度兼容。此外,我们的结果表明,相对定时噪声测量技术可以表征自由运行模式下或具有有限重复率差异的双梳状系统,同时提供亚阿秒分辨率,这在以前的任何其他方法中都是不可行的。