Title :
An Optical Fiber Fabry–Perot Interferometer Sensor for Simultaneous Measurement of Relative Humidity and Temperature
Author :
Hao Sun ; Xiaolei Zhang ; Liutong Yuan ; Libin Zhou ; Xueguang Qiao ; Manli Hu
Author_Institution :
Dept. of Phys., Northwest Univ., Xi´an, China
Abstract :
A simultaneous relative humidity (RH) and temperature sensor based on an optical fiber Fabry-Perot interferometer is proposed and experimentally demonstrated. This sensor is constructed by splicing a short length of photonic crystal fiber (PCF) to single mode fiber and coating an ultrathin polyvinyl alcohol film to the PCFs cleaved surface. The total length of this sensing head is only ~110 μM and the compact size means it can be used flexibly in limited space and harsh environments. Experimental results demonstrate that this sensor can simultaneously measure the ambient RH and temperature by demodulating the power change and wavelength shift of reflection spectrum. Consequently, the advantages of compact size, low cost, high flexibility and stability, fast response, and simultaneous RH and temperature measurement ability means the proposed sensor has an extensive range of potential applications.
Keywords :
Fabry-Perot interferometers; antireflection coatings; fibre optic sensors; holey fibres; humidity measurement; optical films; organic compounds; photonic crystals; splicing; temperature measurement; temperature sensors; thin film sensors; PCF cleaved surface; RH; coating; optical fiber Fabry-Perot interferometer sensor; photonic crystal fiber; power change demodulation; relative humidity measurement; short length splicing; single mode fiber; stability; temperature measurement; temperature sensor; ultrathin polyvinyl alcohol film; wavelength shift reflection spectrum; Humidity; Interference; Optical fiber sensors; Optical fibers; Temperature measurement; Temperature sensors; Optical fiber interferometer; photonic crystal fiber; polyvinyl alcohol; relative humidity and temperature;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2014.2383387