Instituto de Engenharia de Sistemas e Computadores (INESC) Porto, Porto, Portugal.
Opt Lett. 2011 Mar 15;36(6):852-4. doi: 10.1364/OL.36.000852.
A large-core air-clad photonic crystal fiber-based sensing structure is described, which is sensitive to refractive index. The sensing head is based on multimodal interference, and relies on a single-mode/large-core air-clad photonic crystal fiber (PCF)/single-mode fiber configuration. Using two distinct large-core air-clad PCF geometries-one for refractive index measurement and the other for temperature compensation, it was possible to implement a sensing head sensitive to refractive index changes in water as induced by temperature variations. The results indicated the high sensitivity of this sensing head to refractive index variations of water, and a resolution of 3.4×10(-5) refractive index units could be achieved.
一种基于大芯空包层光子晶体光纤的传感结构被描述,它对折射率敏感。传感头基于多模干涉,依赖于单模/大芯空包层光子晶体光纤(PCF)/单模光纤结构。使用两种不同的大芯空包层 PCF 几何形状——一种用于折射率测量,另一种用于温度补偿,有可能实现对由温度变化引起的水中折射率变化敏感的传感头。结果表明,这种传感头对水的折射率变化具有很高的灵敏度,并且可以实现 3.4×10(-5)折射率单位的分辨率。