Wuhan National Lab for Optoelectronics (WNLO), School of Optics and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China.
Optics Valley Laboratory, Wuhan 430074, China.
Sensors (Basel). 2023 Mar 24;23(7):3436. doi: 10.3390/s23073436.
In this paper, a review of multicore fiber interferometric sensors is given. Due to the specificity of fiber structure, i.e., multiple cores integrated into only one fiber cladding, multicore fiber (MCF) interferometric sensors exhibit many desirable characteristics compared with traditional fiber interferometric sensors based on single-core fibers, such as structural and functional diversity, high integration, space-division multiplexing capacity, etc. Thanks to the unique advantages, e.g., simple fabrication, compact size, and good robustness, MCF interferometric sensors have been developed to measure various physical and chemical parameters such as temperature, strain, curvature, refractive index, vibration, flow, torsion, etc., among which the extraordinary vector-bending sensing has also been extensively studied by making use of the differential responses between different cores of MCFs. In this paper, different types of MCF interferometric sensors and recent developments are comprehensively reviewed. The basic configurations and operating principles are introduced for each interferometric structure, and, eventually, the performances of various MCF interferometric sensors for different applications are compared, including curvature sensing, vibration sensing, temperature sensing, and refractive index sensing.
本文对多芯光纤干涉传感器进行了综述。由于光纤结构的特殊性,即多个纤芯集成在仅一个光纤包层中,与基于单芯光纤的传统光纤干涉传感器相比,多芯光纤(MCF)干涉传感器具有许多理想的特性,如结构和功能多样性、高集成度、空分复用容量等。多芯光纤干涉传感器由于具有制造简单、尺寸紧凑、鲁棒性好等独特优势,已经发展成为测量各种物理和化学参数的传感器,如温度、应变、曲率、折射率、振动、流量、扭转等,其中利用 MCF 中不同纤芯的差分响应,对外差弯曲传感也进行了广泛的研究。本文全面回顾了不同类型的多芯光纤干涉传感器及其最新进展。对每种干涉结构的基本配置和工作原理进行了介绍,最终比较了各种 MCF 干涉传感器在不同应用中的性能,包括曲率传感、振动传感、温度传感和折射率传感。