Title :
Sensitivity-Enhanced Pressure Sensor With Hollow-Core Photonic Crystal Fiber
Author :
Maoxiang Hou ; Ying Wang ; Shuhui Liu ; Jiangtao Guo ; Zhihua Li ; Peixiang Lu
Author_Institution :
Wuhan Nat. Lab. for Optoelectron., Huazhong Univ. of Sci. & Technol., Wuhan, China
Abstract :
We experimentally demonstrate a sensitivity-enhanced fiber-optic pressure sensor using a simplified hollow-core photonic crystal fiber (SHC-PCF). The sensing head is fabricated by splicing a single mode fiber to a section of SHC-PCF, while the air claddings at the end of the PCF are selectively blocked by glue sealing and femtosecond laser machining. By immersing the end into water, a compressible Fabry-Pérot cavity can be formed in the fiber core of the PCF. Since the air core is opened up to the air claddings at the splicing joint, changing of environmental pressure will cost a large change of the cavity length to balance the pressure, which greatly enhances the pressure sensitivity of the sensor. A pressure sensitivity of 18.15 μm/kPa is experimentally demonstrated in the pressure range from 110 to 130 kPa. This sensor has potential applications in the area of highly sensitive pressure measurement.
Keywords :
fibre optic sensors; high-speed optical techniques; holey fibres; optical fibre cladding; optical fibre fabrication; photonic crystals; pressure measurement; pressure sensors; Fabry-Pérot cavity; SHC-PCF; air claddings; cavity length; femtosecond laser machining; glue sealing; pressure 110 kPa to 130 kPa; pressure measurement; sensitivity-enhanced fiber-optic pressure sensor; simplified hollow-core photonic crystal fiber; single mode fiber splicing; Cavity resonators; Educational institutions; Sensitivity; Silicon compounds; Temperature sensors; Ultrafast optics; Fabry-P??rot interferometers; optical fiber transducers; pressure measurement;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2014.2358713