Photo-induced cascaded harmonic and comb generation in silicon nitride microresonators.

Hu, Jianqi; Nitiss, Edgars; He, Jijun; Liu, Junqiu; Yakar, Ozan; Weng, Wenle; Kippenberg, Tobias J; Brès, Camille-Sophie · Sci Adv · 2022

basic_science · Level V

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Abstract

Silicon nitride (Si<sub>3</sub>N<sub>4</sub>) is an ever-maturing integrated platform for nonlinear optics but mostly considered for third-order [χ<sup>(3)</sup>] nonlinear interactions. Recently, second-order [χ<sup>(2)</sup>] nonlinearity was introduced into Si<sub>3</sub>N<sub>4</sub> via the photogalvanic effect, resulting in the inscription of quasi-phase-matched χ<sup>(2)</sup> gratings. However, the full potential of the photogalvanic effect in microresonators remains largely unexplored for cascaded effects. Here, we report combined χ<sup>(2)</sup> and χ<sup>(3)</sup> nonlinear effects in a normal dispersion Si<sub>3</sub>N<sub>4</sub> microresonator. We demonstrate that the photo-induced χ<sup>(2)</sup> grating also provides phase-matching for the sum-frequency generation process, enabling the initiation and successive switching of primary combs. In addition, the doubly resonant pump and second-harmonic fields allow for effective third-harmonic generation, where a secondary optically written χ<sup>(2)</sup> grating is identified. Last, we reach a broadband microcomb state evolved from the sum-frequency-coupled primary comb. These results expand the scope of cascaded effects in microresonators.