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浙江师范大学 物理与电子信息工程学院,浙江 金华 321004
Received:16 December 2020,
Revised:05 February 2021,
Published:15 May 2021
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吴根柱,林春婷,卢俊城等.七芯光子晶体光纤温度传感器[J].光学精密工程,2021,29(05):951-957.
WU Gen-zhu,LIN Chun-ting,LU Jun-cheng,et al.Seven-core photonic crystal fiber temperature sensor[J].Optics and Precision Engineering,2021,29(05):951-957.
吴根柱,林春婷,卢俊城等.七芯光子晶体光纤温度传感器[J].光学精密工程,2021,29(05):951-957. DOI: 10.37188/OPE.2020.0662.
WU Gen-zhu,LIN Chun-ting,LU Jun-cheng,et al.Seven-core photonic crystal fiber temperature sensor[J].Optics and Precision Engineering,2021,29(05):951-957. DOI: 10.37188/OPE.2020.0662.
为了深入探究七芯光子晶体光纤的传感特性,本利用有限元法研究七芯光子晶体对温度的传感特性,找到七芯光子晶体纤芯基模与包层高阶模的有效折射差与温度的关系,算出波谷波长与温度的变化关系,即理论灵敏度,并基于单模-七芯光子晶体-单模结构的马赫-曾德尔干涉结合水浴法进行温度传感实验检测。研究结果表明:七芯光子晶体光纤的理论灵敏值为-47.14 pm/ºC,实验测出的灵敏度为-48.86 pm/ºC。可以发现七芯光子晶体光纤对温度具有良好的线性传感特性,而且稳定性好、线性拟合度高、制作工艺简单,在海洋环境监测、生物制药和食品检测等领域具有良好的应用价值。
To better understand the sensing characteristics of the seven-core photonic crystal fiber, this study adopted the method of combining theory and experiment. The finite element method was used to evaluate the temperature sensing characteristics of the seven-core photonic crystal, and the relationship between the effective refraction difference under the basic mode of the seven-core photonic crystal core and the higher order mode of the cladding and the temperature was determined. Moreover, the relationship between the wavelength of the trough and the temperature, that is, theoretical sensitivity, was calculated. And it was based on the single-mode-seven-core photonic crystal-single-mode Mach-Zehnder interference combined with the water bath method to detect the temperature. The results indicate that the theoretically calculated sensitivity is -47.14 pm/ºC, and the experimentally measured sensitivity is -48.86 pm/ºC. The seven-core photonic crystal fiber also features good linear temperature sensing characteristics. Owing to its good stability, high linearity fit, simple manufacturing process, and other characteristics, it shows potential for application in marine environmental monitoring, the biopharmaceutical industry, food testing, and other fields.
亓志扬 , 温晓东 , 张聪聪 , 等 . 基于马赫-曾德尔干涉仪的光纤扭转传感器 [J]. 光学技术 , 2019 , 45 ( 1 ): 54 - 57 .
QI ZH Y , WEN X D , ZHANG C C , et al . Optical fiber torsion sensor based on Mach-Zehnder interferometer [J]. Optical Technique , 2019 , 45 ( 1 ): 54 - 57 . (in Chinese)
GIANTI M S , PRASETYO E , WIJAYA A D , et al . Vibration measurement of mathematical pendulum based on macrobending-fiber optic sensor as a model of bridge structural health monitoring [J]. Procedia Engineering , 2017 , 170 : 430 - 434 .
代晓媛 . 浅谈光纤通信在军事领域的应用 [J]. 电子世界 , 2017 , 15 : 172 .
DAI X Y . Talking about the application of optical fiber communication in military field [J]. Electronics World , 2017 , 15 : 172 . (in Chinese)
QUANDT B M , SCHERER L J , BOESEL L F , et al . Body-monitoring and health supervision by means of optical fiber-based sensing systems in medical textiles [J]. Advanced Healthcare Materials , 2015 , 4 ( 3 ): 330 - 355 .
彭志清 , 廖杰 , 李玉洁 , 等 . 改性石墨烯包覆光纤的马赫-曾德尔大肠杆菌传感器 [J]. 光学 精密工程 , 2020 , 28 ( 2 ): 296 - 302 .
PENG ZH Q , LIAO J , LI Y J , et al . Escherichia coli fiber sensor based on modified graphene coated fiber Mach-Zehnder interference [J]. Opt. Precision Eng. , 2020 , 28 ( 2 ): 296 - 302 . (in Chinese)
耿优福 , 李学金 . 基于微结构光纤的温度传感器研究 [J]. 应用科学学报 , 2020 , 38 ( 2 ): 260 - 278 .
GENG Y F , LI X J . Research on temperature sensors based on microstructured fiber [J]. Journal of Applied Sciences , 2020 , 38 ( 2 ): 260 - 278 . (in Chinese)
SHAO L P , HU J H , LU H L , et al . High-sensitivity temperature sensor based on polarization maintaining fiber Sagnac loop [J]. Photonic Sensors , 2019 , 9 ( 1 ): 25 - 32 .
ZUO C , GANG T , HU M , et al . 3D imaging of mural model in air using sensitivity-improved ultrasonic sensor based on fiber-optic Fabry-Perot interferometer [J]. Optik , 2019 , 185 : 1205 - 1212 .
LIU Y , PENG W , LIANG Y , et al . Fiber-optic Mach-Zehnder interferometric sensor for high-sensitivity high temperature measurement [J]. Optics Communications , 2013 , 300 : 194 - 198 .
仲志成 , 赵斌 , 林君 , 等 . 基于光纤传感技术的三维地应力传感器 [J]. 光学 精密工程 , 2018 , 26 ( 2 ): 325 - 335 .
ZHONG ZH CH , ZHAO B , LIN J , et al . Three dimensional in situ stress sensor based on optical fiber sensing technology [J]. Opt. Precision Eng. , 2018 , 26 ( 2 ): 325 - 335 . (in Chinese)
孙广开 , 曲道明 , 闫光 , 等 . 软体气动驱动器弯曲变形光纤传感与形状重构 [J]. 光学 精密工程 , 2019 , 27 ( 5 ): 1052 - 1059 .
SUN G K , QU D M , YAN G , et al . Bending deformation of optical fiber sensing and shape reconstruction of soft pneumatic driver [J]. Opt. Precision Eng. , 2019 , 27 ( 5 ): 1052 - 1059 . (in Chinese)
LEI M , ZHANG Y N , HAN B , et al . In-line Mach-Zehnder interferometer and FBG with smart hydrogel for simultaneous pH and temperature detection [J]. IEEE Sensors Journal , 2018 , 18 ( 18 ): 7499 - 7504 .
陶宇 , 牛思瑶 , 冯文林 . 磁流体包覆无芯-三芯-无芯光纤结构的磁场传感器 [J]. 光学 精密工程 , 2020 , 28 ( 8 ): 1700 - 1706 .
TAO Y , NIU S Y , FENG W L . Magnetic field sensor based on magnetic fluid coated no-core-three-core-no-core fiber structure [J]. Opt. Precision Eng. , 2020 , 28 ( 8 ): 1700 - 1706 . (in Chinese)
陈家乐 , 陶玉敏 , 梅笑冰 , 等 . 双锥结构的SMS干涉型温度传感 [J]. 光通信技术 , 2018 , 42 ( 9 ): 59 - 62 .
CHEN J L , TAO Y M , MEI X B , et al . SMS interferometric temperature sensor based on two down-tapers structure [J]. Optical Communication Technology , 2018 , 42 ( 9 ): 59 - 62 . (in Chinese)
辛鹏程 , 曹晔 , 宫顺顺 , 等 . 一种多模-细芯-多模结构的干涉型光纤传感器 [J]. 光电子·激光 , 2018 , 29 ( 7 ): 708 - 712 .
XIN P CH , CAO Y , GONG SH SH , et al . Interferometric fiber optic sensor with multimode fiber-thin core fiber-multimode fiber structure [J]. Journal of Optoelectronics·Laser , 2018 , 29 ( 7 ): 708 - 712 . (in Chinese)
仲怡美 , 孟昭 , 王雪 , 等 . 基于球形结构和少模光纤的干涉型温度传感器 [J]. 光通信技术 , 2017 , 41 ( 8 ): 9 - 12 .
ZHONG Y M , MENG ZH , WANG X , et al . Interferometric optical temperature sensor based on spherical structure and few-mode fiber [J]. Optical Communication Technology , 2017 , 41 ( 8 ): 9 - 12 . (in Chinese)
何惠梅 . 多芯结构的光纤、光子晶体光纤耦合及传感特性研究 [D]. 北京 : 北京工业大学 , 2014 .
HE H M . Research on Coupling and Sensing Characteristics of Multi-core structure Fibers and Photonic Crystal Fibers [D]. Beijing : Beijing University of Technology , 2014 . (in Chinese)
杨静 . 七芯光子晶体光纤的特性研究 [D]. 重庆 : 重庆大学 , 2015 .
YANG J . Study on the Characteristics of Seven-core Photonic Crystal Fiber [D]. Chongqing : Chongqing University , 2015 . (in Chinese)
KARAM L , ADAMIETZ F , MICHAU D , et al . Electrically micro‐polarized amorphous sodo‐niobate film competing with crystalline lithium niobate second‐order optical response [J]. Advanced Optical Materials , 2020 , 8 ( 13 ): 2000202 .
张成栋 , 周旋风 , 陈子伦 , 等 . 选择性空气孔塌缩技术实现七芯光子晶体光纤低损耗熔接 [J]. 中国激光 , 2014 , 41 ( 10 ): 1005004 .
ZHANG CH D , ZHOU X F , CHEN Z L , et al . Low loss fusion splicing for seven-core photonic crystal fiber by selected air hole collapse technique [J]. Chinese Journal of Lasers , 2014 , 41 ( 10 ): 1005004 . (in Chinese)
耿鹏程 , 侯蓝田 , 韩伟涛 , 等 . 七芯光子晶体光纤耦合特性的研究 [J]. 燕山大学学报 , 2010 , 34 ( 4 ): 349 - 353 .
GENG P CH , HOU L T , HAN W T , et al . Research on coupling characteristics of seven-core photonic crystal fiber [J]. Journal of Yanshan University , 2010 , 34 ( 4 ): 349 - 353 . (in Chinese)
贾丽笑 . 光子晶体光纤的高双折射与多芯准光子晶体光纤的耦合研究 [D]. 秦皇岛 : 燕山大学 , 2018 .
JIA L X . Study on the Coupling of High Birefringence of Photonic Crystal Fiber and Multi-core Quasi-photonic Crystal Fiber [D]. Qinhuangdao : Yanshan University , 2018 . (in Chinese)
LIU M , LIU M , ZHAO B Y , et al . Seven-core photonic liquid crystal fibers for simultaneous mode shaping and temperature sensing [J]. Chinese Optics Letters , 2017 , 15 ( 6 ): 060601 .
OU Z L , YU Y Q , YAN P G , et al . Ambient refractive index-independent bending vector sensor based on seven-core photonic crystal fiber using lateral offset splicing [J]. Optics Express , 2013 , 21 ( 20 ): 23812 - 23821 .
赵昺玥 . 光子晶体光纤温度传感特性与抗弯曲特性的研究 [D]. 重庆 : 重庆大学 , 2018 .
ZHAO B Y . Study on Temperature Sensing and Bend- Resistant Characteristics of Photonic Crystal Fibers [D]. Chongqing : Chongqing University , 2018 . (in Chinese)
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