Cascaded multicore fiber interferometers for enhanced bending sensing based on the Vernier effect

Author:

Ou Jia-le1,Deng Hao-Wen1,Wu Chuang1ORCID,Li Jie1,Guan Bai-Ou1ORCID

Affiliation:

1. College of Physics & Optoelectronic Engineering

Abstract

In this paper, cascaded modal interferometers constructed by strongly-coupled seven-core fiber (SC-SCF) with different lengths are demonstrated for enhanced bending sensing based on Vernier effect. The free spectral range (FSR) of a single SC-SCF interferometer is determined by the length of SC-SCF. Two SC-SCF interferometers with different FSRs are cascaded, in which, one functions as the sensor while the other functions as the reference. The wavelength shift of the envelope of the output spectrum is much larger than that of a single SC-SCF interferometer due to the Vernier effect. Therefore, enhanced sensing can be achieved. Experimental results show that the bending sensitivity of the proposed sensor is improved from −2.20 nm/m−1 (single SC-SCF interferometer) to 42.32 nm/m−1 (cascaded SC-SCF interferometers). The temperature response of the sensor is also investigated. Our proposed cascaded SC-SCF sensor has advantages of high sensitivity, ease of fabrication, and low cost. It is attractive for high precision bending sensing applications.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Guangdong Province

Pearl River S and T Nova Program of Guangzhou Municipality

Guangdong Provincial Pearl River Talents Program

Guangzhou Science and Technology Program key projects

Publisher

Optica Publishing Group

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1. Regression Decision Trees Used With An Interferometric Sensor for Improved Temperature Measurement;2024 Latin American Workshop on Optical Fiber Sensors (LAWOFS);2024-05-20

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