Wang Huajie, Zheng Laifang, Zhang Junsheng, Liu Jijun
Department of Electronic Engineering, Taiyuan Institute of Technology, Taiyuan, 030000, China.
Sci Rep. 2022 May 12;12(1):7849. doi: 10.1038/s41598-022-12089-5.
An in-fiber Michelson interferometer (MI)-based inclinometer, which consists of misalignment-spliced fiber with end coating, is proposed and experimentally demonstrated. The incident light divided at the misalignment-spliced joint is reflected at the end coating, and then re-coupled into the fiber core. Due to the phase difference between the core mode and the [Formula: see text] cladding mode, a typical MI is formed. The fiber near the misalignment-spliced joint is inserted in two capillary quartz tubes. The tilt of the capillary quartz tube leads to a significant deformation and curvature of the misalignment-spliced joint, which causes the wavelength and intensity of the MI spectrum to change. The experimental results indicate a good response within the angle range of 0°-50°. Both the wavelength modulation and intensity modulation are realized, with sensitivities of 0.55 nm/deg and 0.17 dB/deg, respectively. Moreover, the sensor shows a strong orientation dependence due to the asymmetric structure in the misalignment-spliced joint.
提出并通过实验验证了一种基于光纤迈克尔逊干涉仪(MI)的倾角仪,它由带有端部涂层的错位熔接光纤组成。在错位熔接处分开的入射光在端部涂层处反射,然后重新耦合到光纤芯中。由于纤芯模式和包层模式之间的相位差,形成了典型的迈克尔逊干涉仪。将靠近错位熔接处的光纤插入两根石英毛细管中。石英毛细管的倾斜会导致错位熔接处发生明显变形和弯曲,从而使迈克尔逊干涉仪光谱的波长和强度发生变化。实验结果表明在0°至50°的角度范围内有良好的响应。实现了波长调制和强度调制,灵敏度分别为0.55 nm/°和0.17 dB/°。此外,由于错位熔接处的不对称结构,该传感器表现出很强的方向依赖性。