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Updated: Sep 13, 2025

Writing Bragg Gratings in Multicore Fibers
Published on: April 20, 2016
Backward Brillouin three-parameter sensing simulation based on multicore optical fibers
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Conventional distributed Brillouin optical fiber sensors, whether theoretically modeled or experimentally implemented, provide simultaneous access to only two physical parameters at most, typically limited to either curvature or temperature-strain. Here, we theoretically study a three-parameter sensor based on backward Brillouin scattering and develop a sensing error assessment model in a multicore fiber (MCF) configuration with one inner core, three outer cores, and a two-step refractive index profile. This sensor enables discriminative recognition of temperature, strain and curvature parameters through combining the spatial division multiplexing (SDM) with acoustic-mode division multiplexing (AMDM) in both inner and outer cores. We establish a 3D matrix for error-quantified tri-parameter recovering. The maximum errors of temperature, strain, and curvature radius, in theory, are 1.7410°C, 44.3315 µε, and 2.4727 × 10-3 m, respectively. This theoretical work potentially offers a crucial reference for Brillouin distributed sensing from traditional dual-parameter to next-generation three-parameter sensing systems.

