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基于磁凝胶包覆空心光纤中反谐振反射导引的磁场传感器。

Magnetic field sensor based on anti-resonant reflecting guidance in the magnetic gel-coated hollow core fiber.

作者信息

Gao R, Jiang Y, Zhao Yang

出版信息

Opt Lett. 2014 Nov 1;39(21):6293-6. doi: 10.1364/OL.39.006293.

Abstract

A compact all-fiber magnetic field sensor based on the magnetic gel coated hollow core fiber (HCF) has been proposed and experimentally demonstrated. A double-layered Fabry-Perot resonator is formed by coating a magnetic gel layer on the surface of the HCF. Anti-resonant reflecting guidance of light can be achieved in the HCF, and leaky mode is induced at resonant wavelength of the double-layered Fabry-Perot resonator, which results in lossy dips in the transmission spectrum of the HCF. Due to the tunable magneto-elastic effect, the shape of the magnetic gel is deformed with the external magnetic field, which results in a change of the resonate condition for the double-layered Fabry-Perot resonator. The magnetic field can be measured by interrogating the wavelength of the lossy dip. The experimental results show that a magnetic field sensitivity of 245  pm/Oe is achieved.

摘要

提出并通过实验验证了一种基于磁凝胶涂覆空心光纤(HCF)的紧凑型全光纤磁场传感器。通过在HCF表面涂覆磁凝胶层形成双层法布里 - 珀罗谐振器。在HCF中可实现光的反谐振反射引导,并且在双层法布里 - 珀罗谐振器的谐振波长处会诱导出泄漏模式,这导致HCF传输光谱中出现有损凹陷。由于可调谐的磁弹性效应,磁凝胶的形状会随外部磁场发生变形,这导致双层法布里 - 珀罗谐振器的谐振条件发生变化。通过询问有损凹陷的波长可以测量磁场。实验结果表明实现了245 pm/Oe的磁场灵敏度。

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