中文版 | English
题名

Integrated Fiber Ring Laser Temperature Sensor Based on Vernier Effect with Lyot–Sagnac Interferometer

作者
通讯作者Zhang,Xuming
发表日期
2023-07-01
DOI
发表期刊
ISSN
1424-8220
EISSN
1424-8220
卷号23期号:14
摘要
The Vernier effect created using an incorporated Lyot–Sagnac loop is used to create an ultra-high sensitivity temperature sensor based on a ring laser cavity. Unlike standard double Sagnac loop systems, the proposed sensor is fused into a single Sagnac loop by adjusting the welding angle between two polarization-maintaining fibers (PMFs) to achieve effective temperature sensitivity amplification. The PMFs are separated into two arms of 0.8 m and 1 m in length, with a 45° angle difference between the fast axes. The sensor’s performance is examined both theoretically and experimentally. The experimental results reveal that the Vernier amplification effect can be achieved via PMF rotating shaft welding. The temperature sensitivity in the laser cavity can reach 2.391 nm/°C, which is increased by a factor of more than eight times compared with a single Sagnac loop structure (0.298 nm/°C) with a length of 0.8 m without the Vernier effect at temperatures ranging from 20 °C to 30 °C. Furthermore, unlike traditional optical fiber sensing that uses a broadband light source (BBS) for detection, which causes issues such as low signal-to-noise ratio and broad bandwidth, the Sagnac loop can be employed as a filter by inserting itself into the fiber ring laser (FRL) cavity. When the external parameters change, the laser is offset by the interference general modulation, allowing the external temperature to be monitored. The superior performance of signal-to-noise ratios of up to 50 dB and bandwidths of less than 0.2 nm is achieved. The proposed sensor has a simple structure and high sensitivity and is expected to play a role in biological cell activity monitoring.
关键词
相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
学校署名
第一
资助项目
Department of Building and Real Estate, Hong Kong Polytechnic University[1-BBEN];Hospitality and Tourism Research Centre, Hong Kong Polytechnic University[1-BBEN];Department of Industrial and Systems Engineering, Hong Kong Polytechnic University[1-BBEN];Hong Kong Polytechnic University[1-BBEN];Research Institute for Sustainable Urban Development, Hong Kong Polytechnic University[1-BBEN];University Research Facility in Chemical and Environmental Analysis, Hong Kong Polytechnic University[1-BBEN];Department of Building and Real Estate, Hong Kong Polytechnic University[1-CD4V];Hospitality and Tourism Research Centre, Hong Kong Polytechnic University[1-CD4V];Department of Industrial and Systems Engineering, Hong Kong Polytechnic University[1-CD4V];Hong Kong Polytechnic University[1-CD4V];Research Institute for Sustainable Urban Development, Hong Kong Polytechnic University[1-CD4V];University Research Facility in Chemical and Environmental Analysis, Hong Kong Polytechnic University[1-CD4V];Department of Building and Real Estate, Hong Kong Polytechnic University[1-CD6U];Hospitality and Tourism Research Centre, Hong Kong Polytechnic University[1-CD6U];Department of Industrial and Systems Engineering, Hong Kong Polytechnic University[1-CD6U];Hong Kong Polytechnic University[1-CD6U];Research Institute for Sustainable Urban Development, Hong Kong Polytechnic University[1-CD6U];University Research Facility in Chemical and Environmental Analysis, Hong Kong Polytechnic University[1-CD6U];Department of Building and Real Estate, Hong Kong Polytechnic University[1-W28S];Hospitality and Tourism Research Centre, Hong Kong Polytechnic University[1-W28S];Department of Industrial and Systems Engineering, Hong Kong Polytechnic University[1-W28S];Hong Kong Polytechnic University[1-W28S];Research Institute for Sustainable Urban Development, Hong Kong Polytechnic University[1-W28S];University Research Facility in Chemical and Environmental Analysis, Hong Kong Polytechnic University[1-W28S];Department of Building and Real Estate, Hong Kong Polytechnic University[1-YY5V];Hospitality and Tourism Research Centre, Hong Kong Polytechnic University[1-YY5V];Department of Industrial and Systems Engineering, Hong Kong Polytechnic University[1-YY5V];Hong Kong Polytechnic University[1-YY5V];Research Institute for Sustainable Urban Development, Hong Kong Polytechnic University[1-YY5V];University Research Facility in Chemical and Environmental Analysis, Hong Kong Polytechnic University[1-YY5V];Department of Building and Real Estate, Hong Kong Polytechnic University[G-SB4J];Hospitality and Tourism Research Centre, Hong Kong Polytechnic University[G-SB4J];Department of Industrial and Systems Engineering, Hong Kong Polytechnic University[G-SB4J];Hong Kong Polytechnic University[G-SB4J];Research Institute for Sustainable Urban Development, Hong Kong Polytechnic University[G-SB4J];University Research Facility in Chemical and Environmental Analysis, Hong Kong Polytechnic University[G-SB4J];
WOS研究方向
Chemistry ; Engineering ; Instruments & Instrumentation
WOS类目
Chemistry, Analytical ; Engineering, Electrical & Electronic ; Instruments & Instrumentation
WOS记录号
WOS:001038958300001
出版者
EI入藏号
20233114470416
EI主题词
Bandwidth ; Fiber Bragg gratings ; Fiber lasers ; Ring lasers ; Signal to noise ratio ; Temperature sensors ; Welding
EI分类号
Welding:538.2 ; Information Theory and Signal Processing:716.1 ; Fiber Optics:741.1.2 ; Lasers:744 ; Solid State Lasers:744.4 ; Temperature Measuring Instruments:944.5
ESI学科分类
CHEMISTRY
Scopus记录号
2-s2.0-85165964377
来源库
Scopus
引用统计
被引频次[WOS]:4
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/559876
专题工学院_电子与电气工程系
作者单位
1.Department of Electrical and Electronic Engineering,Southern University of Science and Technology,Shenzhen,518055,China
2.Department of Applied Physics,Hong Kong Polytechnic University,999077,Hong Kong
3.Peng Cheng Laboratory,Shenzhen,518005,China
第一作者单位电子与电气工程系
第一作者的第一单位电子与电气工程系
推荐引用方式
GB/T 7714
Liu,Yuhui,Lin,Weihao,Hu,Jie,等. Integrated Fiber Ring Laser Temperature Sensor Based on Vernier Effect with Lyot–Sagnac Interferometer[J]. Sensors,2023,23(14).
APA
Liu,Yuhui.,Lin,Weihao.,Hu,Jie.,Zhao,Fang.,Yu,Feihong.,...&Zhang,Xuming.(2023).Integrated Fiber Ring Laser Temperature Sensor Based on Vernier Effect with Lyot–Sagnac Interferometer.Sensors,23(14).
MLA
Liu,Yuhui,et al."Integrated Fiber Ring Laser Temperature Sensor Based on Vernier Effect with Lyot–Sagnac Interferometer".Sensors 23.14(2023).
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