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Updated: Jan 16, 2026

Fabrication of Polymer Microspheres for Optical Resonator and Laser Applications
Published on: June 2, 2017
High Performance Polymeric Fabry-Pérot Microcavities for Sensing and Lasing Applications
Genni Testa1, Vito Coviello1, Gianluca Persichetti1
1Institute for Electromagnetic Sensing of the Environment (IREA), National Research Council (CNR), Via Diocleziano 328, 80124 Naples, Italy.
Abstract:
We present the design, fabrication, and optical characterization of fully polymer-based high performance Fabry-Pérot microcavities for sensing and lasing applications. Two microcavity types (Cavity A and B) were realized using polymeric Distributed Bragg Reflector (DBR) films offering distinct spectral properties. Cavity A achieved a high quality factor (Q ≈ 2.15 × 105), demonstrating excellent sensitivity for bulk refractive index sensing with an ultrahigh figure of merit of 5.89 × 104 and a theoretical detection limit down 3.4 × 10-7 RIU. Cavity B was optimized for lasing applications. When filled with a Rhodamine B dye solution, it exhibited clear lasing action with a low threshold (1.83 μJ/mm2) and resonant peaks consistent with its free spectral range. These results highlight the potential of cost-effective polymeric cavities for disposable photonic sensor platforms and integrated biolaser devices.

