Liu Dejun, Li Wei, Wu Qiang, Zhao Haoyu, Ling Fengzi, Tian Ke, Shen Changyu, Wei Fangfang, Han Wei, Farrell Gerald, Semenova Yuliya, Wang Pengfei
Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, China.
Key Laboratory of Nondestructive Test (Ministry of Education), Nanchang Hangkong University, Nanchang 330063, China.
Sensors (Basel). 2020 Aug 23;20(17):4763. doi: 10.3390/s20174763.
Negative curvature hollow core fiber (NCHCF) is a promising candidate for sensing applications; however, research on NCHCF based fiber sensors starts only in the recent two years. In this work, an all-fiber interferometer based on an NCHCF structure is proposed for the first time. The interferometer was fabricated by simple fusion splicing of a short section of an NCHCF between two singlemode fibers (SMFs). Both simulation and experimental results show that multiple modes and modal interferences are excited within the NCHCF structure. Periodic transmission dips with high spectral extinction ratio (up to 30 dB) and wide free spectral range (FSR) are produced, which is mainly introduced by the modes coupling between HE and HE. A small portion of light guiding by means of Anti-resonant reflecting optical waveguide (ARROW) mechanism is also observed. The transmission dips, resulting from multimode interferences (MMI) and ARROW effect have a big difference in sensitivities to strain and temperature, thus making it possible to monitor these two parameters with a single sensor head by using a characteristic matrix approach. In addition, the proposed sensor structure is experimentally proven to have a good reproducibility.
负曲率空心光纤(NCHCF)是传感应用的一个有前途的候选者;然而,基于NCHCF的光纤传感器的研究仅在最近两年才开始。在这项工作中,首次提出了一种基于NCHCF结构的全光纤干涉仪。该干涉仪是通过在两根单模光纤(SMF)之间简单熔接一小段NCHCF制成的。仿真和实验结果均表明,在NCHCF结构中激发了多种模式和模式干涉。产生了具有高光谱消光比(高达30 dB)和宽自由光谱范围(FSR)的周期性传输凹陷,这主要是由HE和HE之间的模式耦合引起的。还观察到一小部分光通过反谐振反射光波导(ARROW)机制进行传导。由多模干涉(MMI)和ARROW效应产生的传输凹陷对应变和温度的灵敏度有很大差异,因此通过使用特征矩阵方法可以用单个传感头监测这两个参数。此外,所提出的传感器结构经实验证明具有良好的重复性。