Refractometry With a Tailored Sensitivity Based on a Single-Mode-Capillary-Single-Mode Fiber Structure

We demonstrate a simple structure for the refractive index sensing by splicing a segment of capillary with two segments of single-mode fibers (SMFs). By selecting appropriate splicing parameters, two mode coupling regions can be formed with tapered air-cavities on both sides of the capillary. This s...

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Main Authors: Xiaobei Zhang, Haiyang Shao, Yong Yang, Haiyang Pan, Fufei Pang, Tingyun Wang
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7891909/
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spelling doaj-badcd9684662443a94e8ce70056f08222021-03-29T17:38:33ZengIEEEIEEE Photonics Journal1943-06552017-01-01921810.1109/JPHOT.2017.26906867891909Refractometry With a Tailored Sensitivity Based on a Single-Mode-Capillary-Single-Mode Fiber StructureXiaobei Zhang0Haiyang Shao1Yong Yang2Haiyang Pan3Fufei Pang4Tingyun Wang5Laboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai, ChinaLaboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai, ChinaLaboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai, ChinaLaboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai, ChinaLaboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai, ChinaLaboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai, ChinaWe demonstrate a simple structure for the refractive index sensing by splicing a segment of capillary with two segments of single-mode fibers (SMFs). By selecting appropriate splicing parameters, two mode coupling regions can be formed with tapered air-cavities on both sides of the capillary. This simple structure allows us the light propagation in the capillary with a ring mode distribution, while the high-order mode distributed in the capillary will be affected by the surrounding environment. With the inner diameter of the capillary increases, there is an enhancement of interaction between ring modes and the surrounding environment. Therefore, we can realize a tailored sensitivity based on the inner capillary diameter. Maximum refractive index sensitivities of 789, 1196, and 1684 nm/RIU can be obtained in the refractive index range from 1.3360 to 1.4365 when the inner diameter is 5, 15, and 25 μm, respectively. The distinguishing feature of such a capillary-based fiber sensor is that it can be used for the refractometry with a tailored high sensitivity through choosing the inner capillary diameter.https://ieeexplore.ieee.org/document/7891909/Optical fiber sensorsfiber opticsoptical device fabrication.
collection DOAJ
language English
format Article
sources DOAJ
author Xiaobei Zhang
Haiyang Shao
Yong Yang
Haiyang Pan
Fufei Pang
Tingyun Wang
spellingShingle Xiaobei Zhang
Haiyang Shao
Yong Yang
Haiyang Pan
Fufei Pang
Tingyun Wang
Refractometry With a Tailored Sensitivity Based on a Single-Mode-Capillary-Single-Mode Fiber Structure
IEEE Photonics Journal
Optical fiber sensors
fiber optics
optical device fabrication.
author_facet Xiaobei Zhang
Haiyang Shao
Yong Yang
Haiyang Pan
Fufei Pang
Tingyun Wang
author_sort Xiaobei Zhang
title Refractometry With a Tailored Sensitivity Based on a Single-Mode-Capillary-Single-Mode Fiber Structure
title_short Refractometry With a Tailored Sensitivity Based on a Single-Mode-Capillary-Single-Mode Fiber Structure
title_full Refractometry With a Tailored Sensitivity Based on a Single-Mode-Capillary-Single-Mode Fiber Structure
title_fullStr Refractometry With a Tailored Sensitivity Based on a Single-Mode-Capillary-Single-Mode Fiber Structure
title_full_unstemmed Refractometry With a Tailored Sensitivity Based on a Single-Mode-Capillary-Single-Mode Fiber Structure
title_sort refractometry with a tailored sensitivity based on a single-mode-capillary-single-mode fiber structure
publisher IEEE
series IEEE Photonics Journal
issn 1943-0655
publishDate 2017-01-01
description We demonstrate a simple structure for the refractive index sensing by splicing a segment of capillary with two segments of single-mode fibers (SMFs). By selecting appropriate splicing parameters, two mode coupling regions can be formed with tapered air-cavities on both sides of the capillary. This simple structure allows us the light propagation in the capillary with a ring mode distribution, while the high-order mode distributed in the capillary will be affected by the surrounding environment. With the inner diameter of the capillary increases, there is an enhancement of interaction between ring modes and the surrounding environment. Therefore, we can realize a tailored sensitivity based on the inner capillary diameter. Maximum refractive index sensitivities of 789, 1196, and 1684 nm/RIU can be obtained in the refractive index range from 1.3360 to 1.4365 when the inner diameter is 5, 15, and 25 μm, respectively. The distinguishing feature of such a capillary-based fiber sensor is that it can be used for the refractometry with a tailored high sensitivity through choosing the inner capillary diameter.
topic Optical fiber sensors
fiber optics
optical device fabrication.
url https://ieeexplore.ieee.org/document/7891909/
work_keys_str_mv AT xiaobeizhang refractometrywithatailoredsensitivitybasedonasinglemodecapillarysinglemodefiberstructure
AT haiyangshao refractometrywithatailoredsensitivitybasedonasinglemodecapillarysinglemodefiberstructure
AT yongyang refractometrywithatailoredsensitivitybasedonasinglemodecapillarysinglemodefiberstructure
AT haiyangpan refractometrywithatailoredsensitivitybasedonasinglemodecapillarysinglemodefiberstructure
AT fufeipang refractometrywithatailoredsensitivitybasedonasinglemodecapillarysinglemodefiberstructure
AT tingyunwang refractometrywithatailoredsensitivitybasedonasinglemodecapillarysinglemodefiberstructure
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