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A novel magnetic fluid based all-fiber-optic vector magnetometer

机译:基于新型磁流体的全光纤矢量磁强计

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We demonstrate a compact all-fiber-optic vector magnetometer based on Mach-Zehnder interferometer by utilizing magnetic fluid filled double-clad photonic crystal fiber (DC-PCF). The magnetic fluid (MF) serving as crucial sensing elements is injected into the micro-channel-arrays of DC-PCF. The magnetometer is constructed by splicing a section of MF-filled DC-PCF between two standard single mode fibers forming a high stable all-fiber structure without any additional sealed capillary. The vector magnetometer has the capability of simultaneous measurement of magnetic field intensity and orientation by monitoring a specific dip wavelength shift or transmission loss of Mach-Zehnder interference spectrum. The magnetometer with response sensitivities of 114.5 pm/mT, 1.79 dB/mT (X-axis) and 41.9 pm/mT, 0.52 dB/mT (Y-axis) at two orthogonal magnetic field orientations was fabricated and investigated.
机译:我们利用磁流体填充的双包层光子晶体光纤(DC-PCF),展示了一种基于Mach-Zehnder干涉仪的紧凑型全光纤矢量磁强计。用作关键传感元件的磁流体(MF)被注入到DC-PCF的微通道阵列中。磁力计是通过在两根标准单模光纤之间拼接一段填充有MF的DC-PCF构成的,从而形成了高稳定的全光纤结构,而没有任何额外的密封毛细管。矢量磁力仪具有通过监测特定的倾角波长偏移或Mach-Zehnder干涉谱的传输损耗来同时测量磁场强度和方向的能力。制作并研究了在两个正交磁场方向上响应灵敏度分别为114.5 pm / mT,1.79 dB / mT(X轴)和41.9 pm / mT,0.52 dB / mT(Y轴)的磁力计。

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