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◆ Science Advances2026-02-13· Lithium niobate

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

Yunxiang Song, Zongda Li, Xinrui Zhu, Norman Lippok, Miro Erkintalo, Marko Lončar

原始摘要(英文原文)· Original 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.
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High-efficiency and broadband Kerr comb generation in normal-dispersion x-cut lithium niobate microresonators — 科研速览 Science Skim