College of Engineering and Applied Sciences and National Laboratory of Solid State Microstructures, Nanjing University, Nanjing 210093, China.
Opt Lett. 2012 Mar 1;37(5):863-5. doi: 10.1364/OL.37.000863.
We fabricate a simple, compact, and stable temperature sensor based on a liquid-sealed photonic crystal fiber (PCF) in-line nonpolarimetric modal interferometer. Different from other reported PCF devices, it does not need expensive polarimetric devices, and the liquid is sealed in one fiber. The device consists of a stub of isopropanol-filled PCF spliced between standard single-mode fibers. The temperature sensitivity (-166 pm/°C) increases over an order of magnitude compared with those of the previous sensors based on air-sealed PCF interferometers built via fusion splicing with the same mechanism. In addition, the refractive index sensitivity also increases. Higher temperature sensitivity can be realized by infiltrating some liquid having a higher thermo-optic coefficient into the microholes of the PCF.
我们制作了一种简单、紧凑且稳定的温度传感器,基于液体密封的光子晶体光纤(PCF)在线非偏振模态干涉仪。与其他报道的 PCF 器件不同,它不需要昂贵的偏振器件,并且液体被密封在一根光纤中。该器件由一段异丙醇填充的 PCF 短管与标准单模光纤熔接而成。与采用相同机制通过熔接构建的基于空气密封 PCF 干涉仪的先前传感器相比,该器件的温度灵敏度(-166 pm/°C)提高了一个数量级。此外,折射率灵敏度也有所提高。通过将一些具有更高的热光系数的液体渗入 PCF 的微孔中,可以实现更高的温度灵敏度。