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Magnetic Nanoparticles Functionalized Few-Mode-Fiber-Based Plasmonic Vector Magnetometer

机译:磁性纳米粒子功能化的基于少量模式纤维的等离子体矢量磁强计

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摘要

In this work, we demonstrate a highly-sensitive vector magnetometer based on a few-mode-fiber-based surface plasmon resonance (SPR) sensor functionalized by magnetic nanoparticles (MNPs) in liquid. To fabricate the sensor, a few-mode fiber is side-polished and coated with a gold film, forming an SPR sensor that is highly sensitive to the surrounding refractive index. The vector magnetometer operates based on the mechanism whereby the intensity and orientation of an external magnetic field alters the anisotropic aggregation of the MNPs and thus the refractive index around the fiber SPR device. This, in turn, shifts the resonance wavelength of the surface plasmon. Experimental results show the proposed sensor is very sensitive to magnetic-field intensity and orientation (0.692 nm/Oe and −11.917 nm/°, respectively). These remarkable sensitivities to both magnetic-field intensity and orientation mean that the proposed sensor can be used in applications to detect weak magnetic-field vectors.
机译:在这项工作中,我们演示了一种高灵敏度的矢量磁力计,该磁力计基于液体中的磁性纳米颗粒(MNP)功能化的基于少数模式纤维的表面等离振子共振(SPR)传感器。为了制造传感器,对几模光纤进行侧面抛光并涂上金膜,从而形成对周围折射率高度敏感的SPR传感器。矢量磁力计基于以下机制进行操作:外部磁场的强度和方向改变MNP的各向异性聚集,从而改变光纤SPR器件周围的折射率。这又改变了表面等离子体激元的共振波长。实验结果表明,该传感器对磁场强度和方向非常敏感(分别为0.692 nm / Oe和-11.917 nm /°)。这些对磁场强度和方向的出色灵敏度意味着,该传感器可用于检测弱磁场矢量的应用中。

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