arXiv · 2205.12776
Mid-infrared frequency combs and staggered spectral patterns in $\chi^{(2)}$ microresonators
Abstract
The potential of frequency comb spectroscopy has aroused great interest in generating mid-infrared frequency combs in the integrated photonic setting. However, despite remarkable progress in microresonators and quantum cascade lasers, the availability of suitable mid-IR comb sources remains scarce. Here, we present a new approach for the generation of mid-IR microcombs through cascaded three-wave-mixing. By pumping a CdSiP$_2$ microresonator at 1.55 $\mu$m wavelength with a low power continuous wave laser, we generate $\chi^{(2)}$ frequency combs at 3.1 $\mu$m wavelength, with a span of about 30 nm. We observe ordinary combs states with a line spacing of the free spectral range of the resonator, and combs where the sideband numbers around the pump and half-harmonic alternate, forming staggered patterns of spectral lines. Our scheme for mid-IR microcomb generation is compatible with integrated telecom lasers. Therefore, it has the potential to be used as a simple and fully integrated mid-IR comb source, relying on only one single material.
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Nicolas Amiune, Zhiwei Fan, Vladislav V. Pankratov, Danila N. Puzyrev, Dmitry V. Skryabin, Kevin T. Zawilski, Peter G. Schunemann, Ingo Breunig. 2022-05-25. Mid-infrared frequency combs and staggered spectral patterns in $\chi^{(2)}$ microresonators. https://doi.org/10.1364/oe.476436
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