Alonso-Murias Monserrat C, Monzón-Hernández David, Rodríguez-Quiroz Osvaldo, Antonio-Lopez J Enrique, Schülzgen Axel, Amezcua-Correa Rodrigo, Villatoro Joel
Opt Lett. 2021 May 1;46(9):2224-2227. doi: 10.1364/OL.421004.
In this Letter, a long-range optical fiber displacement sensor based on an extrinsic Fabry-Perot interferometer (EFPI) built with a strongly coupled multicore fiber (SCMCF) is proposed and demonstrated. To fabricate the device, 9.2 mm of SCMCF was spliced to a conventional single-mode fiber (SMF). The sensor reflection spectrum is affected by super-mode interference in the SCMCF and the interference produced by the EFPI. Displacement of the SMF-SCMCF tip with respect to a reflecting surface produces quantifiable changes in the amplitude and period of the interference pattern in the reflection spectrum. Since the multicore fiber is an efficient light collecting area, sufficient signal intensity can be obtained for displacements of several centimeters. By analyzing the interference pattern in the Fourier domain, it was possible to measure displacements up to 50 mm with a resolution of approximately 500 nm. To our knowledge, this is the first time that a multicore fiber has been used to build a displacement sensor. The dynamic measurement range is at least seven times larger than that achieved with an EFPI built with a conventional SMF. Moreover, the SMF-SCMCF tip is robust and easy to fabricate and replicate.
在本信函中,提出并演示了一种基于由强耦合多芯光纤(SCMCF)构建的外腔法布里-珀罗干涉仪(EFPI)的远程光纤位移传感器。为制造该器件,将9.2毫米的SCMCF熔接到一根传统单模光纤(SMF)上。传感器反射光谱受SCMCF中的超模干涉以及EFPI产生的干涉影响。SMF-SCMCF尖端相对于反射表面的位移会使反射光谱中干涉图样的幅度和周期产生可量化的变化。由于多芯光纤是一个高效的光收集区域,对于几厘米的位移能够获得足够的信号强度。通过在傅里叶域分析干涉图样,能够测量高达50毫米的位移,分辨率约为500纳米。据我们所知,这是首次使用多芯光纤构建位移传感器。其动态测量范围至少比用传统SMF构建的EFPI实现的动态测量范围大七倍。此外,SMF-SCMCF尖端坚固耐用,易于制造和复制。