Dong Bo, Wei Li, Zhou Da-Peng
Department of Physics and Computer Science, Wilfrid Laurier University, Waterloo, Ontario N2L 3C5, Canada.
Appl Opt. 2009 Nov 20;48(33):6466-9. doi: 10.1364/AO.48.006466.
A miniature high-sensitivity, high-temperature fiber sensor with an interferometer based on a bare small-core-diameter dispersion compensation fiber (DCF) is reported. The sensing head is a single-mode-fiber (SMF) DCF configuration formed by a 4 mm long bare DCF with one end connected to the SMF by a fusion splicing technique and the other end cleaved. Due to the large mode index difference and high thermo-optic coefficient induced by two dominative interference modes, a miniature high-temperature fiber sensor with a high sensitivity of 68.6 pm/degrees C is obtained by monitoring the wavelength shift of the interference spectrum. This type of sensor has the features of small size, high sensitivity, high stability, simple structure, and low cost.
报道了一种基于裸小芯径色散补偿光纤(DCF)干涉仪的微型高灵敏度高温光纤传感器。传感头是一种单模光纤(SMF)-DCF结构,由一段4 mm长的裸DCF构成,一端通过熔接技术与SMF相连,另一端切割成斜面。由于两种主要干涉模式引起的大模式折射率差和高热光系数,通过监测干涉光谱的波长偏移,获得了灵敏度高达68.6 pm/℃的微型高温光纤传感器。这种类型的传感器具有尺寸小、灵敏度高、稳定性高、结构简单和成本低的特点。