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High-efficiency and broadband Kerr comb generation in normal-dispersion x-cut lithium niobate microresonators.


ABSTRACT: The ability to generate efficient and coherent frequency combs using photonic integrated circuits offers tremendous potential for a range of applications. X-cut thin-film lithium niobate (TFLN) is promising for developing next-generation microcomb-driven photonic systems, providing a diversity of functionalities through combined [Formula: see text] and electro-optic effects. Normal-dispersion Kerr combs are critically needed because of their standout advantages, yet this dispersion regime remains unexplored on x-cut TFLN. Here, we design and demonstrate microresonators suitable for the robust generation of normal-dispersion Kerr combs. We show Kerr combs that substantially surpass state-of-the-art microcombs on x-cut TFLN in key performance metrics and an ultrabroad frequency comb whose existence is underpinned by both normal-dispersion Kerr dynamics and stimulated Raman scattering. Our work will unlock high-speed and low-energy-consumption photonic circuits for communications and signal processing enabled by a monolithic microcomb technology while also stimulating investigations of previously unknown nonlinear states that may synergize hybrid material nonlinearities.

SUBMITTER: Song Y 

PROVIDER: S-EPMC12904183 | biostudies-literature | 2026 Feb

REPOSITORIES: biostudies-literature

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High-efficiency and broadband Kerr comb generation in normal-dispersion x-cut lithium niobate microresonators.

Song Yunxiang Y   Li Zongda Z   Zhu Xinrui X   Lippok Norman N   Erkintalo Miro M   Lončar Marko M  

Science advances 20260213 7


The ability to generate efficient and coherent frequency combs using photonic integrated circuits offers tremendous potential for a range of applications. X-cut thin-film lithium niobate (TFLN) is promising for developing next-generation microcomb-driven photonic systems, providing a diversity of functionalities through combined [Formula: see text] and electro-optic effects. Normal-dispersion Kerr combs are critically needed because of their standout advantages, yet this dispersion regime remain  ...[more]

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