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High-efficiency and broadband electro-optic frequency combs enabled by coupled micro-resonators

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arxiv 2111.14743 v2 pith:5CS4PDBB submitted 2021-11-29 physics.optics physics.app-ph

classification physics.opticsphysics.app-ph
keywords combopticalfrequencyconversionefficiencyelectro-opticgeneratorsintegrated
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Developments in integrated photonics have led to stable, compact, and broadband comb generators that support a wide range of applications. Current on-chip comb generators, however, are still limited by low optical pump-to-comb conversion efficiencies. Here, we demonstrate an integrated electro-optic frequency comb with a conversion efficiency of 30% and an optical bandwidth of 132 nm, featuring a 100-times higher conversion efficiency and 2.2-times broader optical bandwidth compared with previous state-of-the-art integrated electro-optic combs. We further show that, enabled by the high efficiency, the device acts as an on-chip femtosecond pulse source (336 fs pulse duration), which is important for applications in nonlinear optics, sensing, and computing. As an example, in the ultra-fast and high-power regime, we demonstrate the observation of a combined EO-\chi^(3) nonlinear frequency comb. Our device paves the way for practical optical frequency comb generators enabling energy-efficient computing, communication, and metrology, and provides a platform to investigate new regimes of optical physics that simultaneously involve multiple nonlinearities.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Chip-scale optically driven phononic frequency comb with 1-70 GHz span

    physics.optics 2025-09 conditional novelty 6.0 of 10

    A 2.5-micrometer silicon carbide microdisk driven by 1 mW of light produces 42 phase-locked mechanical harmonics from 1 to 70 GHz.

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