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光子晶体光纤CO_2气体传感器的研究 被引量:5

Research of CO_2 gas sensors based on photonic crystal fiber
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摘要 为了能高灵敏度地检测CO_2气体的体积分数,基于红外光谱吸收原理,设计了一种以9m长的空芯光子晶体光纤作为传感单元的CO_2气体传感器。利用该传感器测量了不同体积分数的CO_2在同一吸收波长下的吸收光谱图。结果表明,气体的吸收光强和气体的体积分数之间呈线性变化,与比尔-朗伯定律一致;传感器的灵敏度可达4.389×10^(-5)W。可通过加长光子晶体光纤的长度,来增加气体吸收的有效距离,使传感系统获得较高灵敏度。 In order to get high sensitivity detection of volume fraction of carbon dioxide gas, a carbon dioxide gas sensor based on the principle of infrared spectrum absorption was designed by using 9m hollow-core photonic crystal fiber as sensing unit.The absorption spectra of carbon dioxide gas with different volume fractions were measured under the same absorption wavelength.The analysis results show that the linear relationship between gas absorption intensity and volume fraction of gas is presented, in accordance with Beer-Lambert law.The detective sensitivity of the system is estimated to be 4.389×10-5W.It can make the system get higher sensitivity by lengthening the photonic crystal fiber and increasing the effective distance of gas absorption.
出处 《激光技术》 CAS CSCD 北大核心 2017年第5期693-696,共4页 Laser Technology
基金 西安市科技局科技计划资助项目(CXY1128)
关键词 传感器技术 灵敏度 红外光谱吸收 光子晶体光纤 sensor technique sensitivity infrared spectrum absorption photonic crystal fiber
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  • 1肖韶荣,陈进榜,朱日宏,高志山.基于直角棱镜的光纤光度传感器[J].中国激光,2004,31(12):1513-1517. 被引量:11
  • 2邝泳聪,李风.基于DSP的通用型光纤位姿传感信息处理模块[J].机电工程技术,2005,34(12):27-29. 被引量:2
  • 3王清月,胡明列,柴路.光子晶体光纤非线性光学研究新进展[J].中国激光,2006,33(1):57-66. 被引量:73
  • 4孟洲,胡永明,姚琼,宋章启,张振慧.《光纤传感技术》研究生课程改革探讨[J].中北大学学报(社会科学版),2007,23(2):98-100. 被引量:13
  • 5J.U.White.Long optical paths of large aperture[J].J.Opt.Soc.Am.,1942,32(5):285-287.
  • 6D.Herriott,H.Kogelnik,R.Kompfner.Off-axis paths in spherical mirror interferometers[J].Appl.Opt.,1964,3(4):523-526.
  • 7C.M.B.Cordeiro,E.M.dos Santos,C.H.Brito Cruz.Lateral access to the holes of photonic crystal fibers-selective filling and sensing applications.[J].Opt.Express,2006,14(8):8403-8412.
  • 8G.Humbert,J.C.Knight,G.Bouwmans et al..Hollow core photonic crystal fibers for beam Delivery [J].Opt.Express,2004,12(8):1477-1484.
  • 9J.A.Harrington.A review of IR transmitting hollow waveguides[J].Fiber and Integrated Optics,2000,19(3):211-227.
  • 10T.P.Hansen,J.Broeng,C.Jakobsen et al..Air-guiding photonic bandgap fibers:spectral properties,macrobending loss and practical handling[J].J.Lightwave Technol.,2004,22(1):11-15.

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