Karunakaran Anamika Nair, Clementi Marco, Lafforgue Christian, Yakar Ozan, Stroganov Anton, Varming Poul, Pu Minhao, Yvind Kresten, Montague Patrick, Brès Camille-Sophie
Opt Express. 2024 Apr 22;32(9):14929-14939. doi: 10.1364/OE.515225.
Chip-scale optical frequency combs enable the generation of highly-coherent pulsed light at gigahertz-level repetition rates, with potential technological impact ranging from telecommunications to sensing and spectroscopy. In combination with techniques such as dual-comb spectroscopy, their utilization would be particularly beneficial for sensing of molecular species in the mid-infrared spectrum, in an integrated fashion. However, few demonstrations of direct microcomb generation within this spectral region have been showcased so far. In this work, we report the generation of Kerr soliton microcombs in silicon nitride integrated photonics. Leveraging a high-Q silicon nitride microresonator, our device achieves soliton generation under milliwatt-level pumping at 1.97 µm, with a generated spectrum encompassing a 422 nm bandwidth and extending up to 2.25 µm. The use of a dual pumping scheme allows reliable access to several comb states, including primary combs, modulation instability combs, as well as multi- and single-soliton states, the latter exhibiting high stability and low phase noise. Our work extends the domain of silicon nitride based Kerr microcombs towards the mid-infrared using accessible factory-grade technology and lays the foundations for the realization of fully integrated mid-infrared comb sources.
芯片级光学频率梳能够以吉赫兹级的重复频率产生高度相干的脉冲光,其潜在的技术影响涵盖从电信到传感和光谱学等多个领域。与双梳光谱等技术相结合,它们的应用对于以集成方式传感中红外光谱中的分子物种将特别有益。然而,到目前为止,在该光谱区域内直接产生微梳的演示很少。在这项工作中,我们报告了在氮化硅集成光子学中产生克尔孤子微梳。利用高Q值的氮化硅微谐振器,我们的器件在1.97 µm的毫瓦级泵浦下实现了孤子产生,产生的光谱涵盖422 nm带宽并延伸至2.25 µm。采用双泵浦方案可以可靠地获得多种梳状状态,包括主梳、调制不稳定性梳以及多孤子和单孤子状态,后者表现出高稳定性和低相位噪声。我们的工作利用可获得的工厂级技术将基于氮化硅的克尔微梳领域扩展到中红外,并为实现完全集成的中红外梳状光源奠定了基础。