Investigation of a Bragg Grating-Based Fabry-Perot Structure Inscribed Using Femtosecond Laser Micromachining in an Adiabatic Fiber Taper

被引:11
作者
Madan, Aayush [1 ,2 ]
Yap, Stephanie Hui Kit [1 ]
Paulose, Varghese [2 ]
Chang, Wonkeun [1 ]
Shum, Perry Ping [1 ]
Hao, Jianzhong [2 ]
机构
[1] Nanyang Technol Univ, Sch Elect & Elect Engn, Singapore 639798, Singapore
[2] Agcy Sci Technol & Res, Inst Infocomm Res, Singapore 138632, Singapore
来源
APPLIED SCIENCES-BASEL | 2020年 / 10卷 / 03期
关键词
Fabry-Perot; microfiber sensor structure; femtosecond laser micromachining; direct writing; point-by-point fabrication; harsh environment fiber sensor; sensor for structural health monitoring; WAVE-GUIDES; TEMPERATURE; INTERFEROMETER; SENSOR; FABRICATION; MICROFIBER; COUPLERS; SENSITIVITY; STRAIN; INDEX;
D O I
10.3390/app10031069
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This paper presents the fabrication of a fiber Bragg grating (FBG)-based Fabry-Perot (FP) structure (7 mm total length) in an adiabatic fiber taper, investigates its strain and temperature characteristics, and compares the sensing characteristics with a standard polyimide coated FBG sensor. Firstly, a simulation of the said structure is presented, followed by the fabrication of an adiabatic fiber taper having the outer diameter reduced to 70 mu m (core diameter to 4.7 mu m). Next, the sensing structure, composed of two identical uniform FBG spaced apart by a small gap, is directly inscribed point-by-point using infrared femtosecond laser (fs-laser) micromachining. Lastly, the strain and temperature behavior for a range up to 3400 mu epsilon and 225 degrees C, respectively, are investigated for the fabricated sensor and the FBG, and compared. The fabricated sensor attains a higher strain sensitivity (2.32 pm/mu epsilon) than the FBG (0.73 pm/mu epsilon), while both the sensors experience similar sensitivity to temperature (8.85 pm/degrees C). The potential applications of such sensors include continuous health monitoring where precise strain detection is required.
引用
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页数:14
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