Gong Yuan, Yu Cai-Bin, Wang Ting-Ting, Liu Xiu-Ping, Wu Yu, Rao Yun-Jiang, Zhang Ming-Lei, Wu Hui-Juan, Chen Xiao-Xiao, Peng Gang-Ding
Opt Express. 2014 Feb 10;22(3):3578-84. doi: 10.1364/OE.22.003578.
An asymmetrical Fabry-Perot interferometric (AFPI) force sensor is fabricated based on a narrowband reflection of low-reflectivity fiber Bragg grating (LR-FBG) and a broadband Fresnel reflection of the cleaved fiber end. The AFPI sensor includes a section of microfiber made by tapering and it achieves a force sensitivity of 0.221 pm/μN with a tapered microfiber of 40 mm length and 6.1 μm waist diameter. Compared with similar AFPI structure in 125 μm-diameter single mode fiber, the force sensitivity of the microfiber AFPI structure is greatly enhanced due to its smaller diameter and can be optimized for different force scales by controlling the diameter. The fabrication process of the AFPI sensor is simple and cost-effective. The AFPI sensor has better multiplexing capacity than conventional extrinsic fiber-optic Fabry-Perot sensors, while it also release the requirement on the wavelength matching of the FBG-pair-based FPI.
基于低反射率光纤布拉格光栅(LR-FBG)的窄带反射和切割光纤端面的宽带菲涅尔反射,制作了一种非对称法布里-珀罗干涉(AFPI)力传感器。该AFPI传感器包括一段通过拉锥制成的微光纤,对于长度为40 mm、腰径为6.1 μm的拉锥微光纤,其力灵敏度达到0.221 pm/μN。与直径为125 μm的单模光纤中的类似AFPI结构相比,微光纤AFPI结构因其直径较小而使力灵敏度大大提高,并且可以通过控制直径针对不同的力尺度进行优化。AFPI传感器的制作工艺简单且成本效益高。该AFPI传感器比传统的非本征型光纤法布里-珀罗传感器具有更好的复用能力,同时也放宽了对基于FBG对的FPI波长匹配的要求。