Lei Fuchuan, Ye Zhichao, Helgason Óskar B, Fülöp Attila, Girardi Marcello, Torres-Company Victor
Department of Microtechnology and Nanoscience, Chalmers University of Technology, SE-41296, Gothenburg, Sweden.
Nat Commun. 2022 Jun 7;13(1):3161. doi: 10.1038/s41467-022-30726-5.
Soliton microcombs provide a versatile platform for realizing fundamental studies and technological applications. To be utilized as frequency rulers for precision metrology, soliton microcombs must display broadband phase coherence, a parameter characterized by the optical phase or frequency noise of the comb lines and their corresponding optical linewidths. Here, we analyse the optical phase-noise dynamics in soliton microcombs generated in silicon nitride high-Q microresonators and show that, because of the Raman self-frequency shift or dispersive-wave recoil, the Lorentzian linewidth of some of the comb lines can, surprisingly, be narrower than that of the pump laser. This work elucidates information about the physical limits in phase coherence of soliton microcombs and illustrates a new strategy for the generation of spectrally coherent light on chip.
孤子微梳为实现基础研究和技术应用提供了一个多功能平台。要用作精密计量的频率标尺,孤子微梳必须表现出宽带相位相干性,这一参数由梳状线的光学相位或频率噪声及其相应的光学线宽来表征。在此,我们分析了在氮化硅高Q微谐振器中产生的孤子微梳的光学相位噪声动力学,并表明,由于拉曼自频移或色散波反冲,一些梳状线的洛伦兹线宽令人惊讶地比泵浦激光器的线宽更窄。这项工作阐明了关于孤子微梳相位相干性物理极限的信息,并展示了一种在芯片上产生光谱相干光的新策略。