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A chip-integrated comb-based microwave oscillator

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arxiv 2403.02828 v1 pith:UPYKB6R7 submitted 2024-03-05 physics.optics physics.app-ph

classification physics.opticsphysics.app-ph
keywords microwavechipfrequencycombscommunicationhybridlaserlinewidth
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abstract

Low-noise microwave oscillators are cornerstones for wireless communication, radar and clocks. Optical frequency combs have enabled photonic microwaves with unrivalled noise performance and bandwidth. Emerging interest is to generate microwaves using chip-based frequency combs, namely microcombs. Here, we demonstrate the first, fully integrated, microcomb-based, microwave oscillator chip. The chip, powered by a microelectronic circuit, leverages hybrid integration of a DFB laser, a nonlinear microresonator, and a high-speed photodetector. Each component represents the best of its own class, yet allows large-volume manufacturing with low cost in CMOS foundries. The hybrid chip outputs an ultralow-noise laser of 6.9 Hz linewidth, a microcomb of 10.7 GHz repetition rate, and a 10.7 GHz microwave of 6.3 mHz linewidth -- all three in one entity of 76 mm$^2$ size.The microwave phase noise reaches -75/-105/-130 dBc/Hz at 1/10/100 kHz Fourier offset frequency. Our results can reinvigorate our information society for communication, sensing, timing and precision measurement.

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Cited by 1 Pith paper

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  1. A high-resolution microresonator-frequency-comb spectrometer

    physics.optics 2025-02 conditional novelty 6.0 of 10

    A soliton microcomb spectrometer with RF-scanned sidebands and VIPA-grating parallel detection reports 200-kHz resolution, 4-THz bandwidth, and minute-scale acquisition.

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