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用于高灵敏度双向磁场传感的封装光流微瓶谐振器。

Packaged optofluidic microbottle resonator for high-sensitivity bidirectional magnetic field sensing.

作者信息

Zhao Shuaichang, Zhang Xiaobei, Zhang Qi, Wang Zijie, Chen Yiqi, Liu Xiaochen, Yang Yong, Dong Yanhua, Huang Yi, Wang Tingyun

出版信息

Opt Lett. 2022 Jun 1;47(11):2766-2769. doi: 10.1364/OL.457168.

Abstract

We demonstrate a high-sensitivity bidirectional magnetic field sensor based on a packaged optofluidic microbottle resonator (OFMBR) filled with magnetic fluid (MF). The relationship between sensitivity and different wall thicknesses and radial modes of OFMBR is theoretically analyzed. Then the thin-wall OFMBR is fabricated by etching a capillary with the fusion discharge process. The OFMBR and tapered fiber is packaged with a portable and robust coupling configuration. By applying perpendicular or parallel magnetic field directions to the OFMBR, opposite refractive index responses of the MF can be obtained, with resonant wavelengths redshifted or blueshifted as the magnetic field intensity is increased. A magnetic field sensitivity of 98.23 pm/mT can be obtained by using the second-order radial mode when the magnetic field is perpendicular to the packaged OFMBR. When the magnetic field is parallel to the packaged OFMBR, the sensitivity is -304.80 pm/mT by using the third-order radial mode and the detection limit reaches 0.0656 mT. The proposed sensor has the advantages of easy fabrication, high sensitivity, and reliability, showing a great potential in bidirectional magnetic field application.

摘要

我们展示了一种基于填充有磁性流体(MF)的封装光流体微瓶谐振器(OFMBR)的高灵敏度双向磁场传感器。从理论上分析了OFMBR的灵敏度与不同壁厚和径向模式之间的关系。然后通过熔接放电工艺蚀刻毛细管来制造薄壁OFMBR。OFMBR和锥形光纤采用便携且坚固的耦合配置进行封装。通过将磁场方向垂直或平行于OFMBR施加,可以获得MF相反的折射率响应,随着磁场强度增加,谐振波长会发生红移或蓝移。当磁场垂直于封装的OFMBR时,使用二阶径向模式可获得98.23 pm/mT的磁场灵敏度。当磁场平行于封装的OFMBR时,使用三阶径向模式的灵敏度为-304.80 pm/mT,检测限达到0.0656 mT。所提出的传感器具有易于制造、高灵敏度和可靠性等优点,在双向磁场应用中显示出巨大潜力。

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