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Spiral resonator referenced on-chip low noise microwave generation

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arxiv 2502.13470 v1 pith:23UBAH7N submitted 2025-02-19 physics.optics physics.app-ph

classification physics.opticsphysics.app-ph
keywords noisemicrowavephasephotonicon-chiposcillatorsplanarrelative
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In recent years, miniaturization and integration of photonic microwave oscillators by optical frequency division approach have witnessed rapid progress. In this work, we report on-chip low phase noise photonic microwave generation based on a planar chip design. Dual lasers are co-locked to a silicon nitride spiral resonator and their relative phase noise is measured below the cavity thermal noise limit, resulting in record low on-chip relative optical phase noise. A broadband integrated electro-optic comb up to 3.43 THz (27 nm) bandwidth is utilized to divide down the relative phase noise of the spiral resonator referenced lasers to the microwave domain. All-around record-low phase noise is achieved for planar chip-based photonic microwave oscillators from 10 Hz to 10 kHz offsets. The planar chip design, high technology-readiness level, foundry-ready processing, combined with the exceptional phase noise performance for our work represent a major advance of integrated photonic microwave oscillators.

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Cited by 1 Pith paper

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

  1. Dual-Wavelength Brillouin Lasers as compact Opto-Terahertz References for Low-Noise Microwave Synthesis

    physics.optics 2025-05 conditional novelty 7.0 of 10

    A 20-liter dual-wavelength Brillouin laser at 300 GHz, divided down by electro-optic frequency division, produces a 10 GHz signal with -130, -150, and -170 dBc/Hz phase noise at 1 kHz, 10 kHz, and 10 MHz offsets.

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