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Updated: May 20, 2026

Fabrication of a Low-Cost, Fiber-Coupled, and Air-Spaced Fabry-Pérot Etalon
Published on: February 3, 2023
Broadband dispersion-engineered Bragg grating mirrors for integrated side-coupled Fabry-Pérot resonators
Davide Monopoli1,2,3, S Hadi Badri4,5, Nicola Maraviglia4,5
1Centre for Advanced Photonics and Process Analysis, Munster Technological University, Cork, T12 P928, Ireland. Davide.Monopoli2@mymtu.ie.
None:
We present the design and demonstration of silicon nitride side-coupled Fabry-Pérot resonators employing both uniform and apodised distributed Bragg reflectors, for broadband dispersion engineering. By implementing air-gap Bragg gratings, we achieve a broad stopband exceeding 70 nm. Apodised gratings enable enhanced dispersion control, allowing transitions from normal to anomalous integrated dispersion. Furthermore, high-Q resonant modes and enhanced peak reflectivity are demonstrated through co-optimisation of cavity length and waveguide-to-cavity gap. The compact footprint, the enhanced mode selectivity and the spectral bandwidth control, make side-coupled Fabry-Pérot resonators a promising platform for resonant mirrors in hybrid on-chip lasers, as well as for sensing and non-linear photonic systems.

