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A Novel Current-sensing Mechanism Based on Surface Plasmon Resonance Enhanced Polar Magneto-optical Kerr Effect

机译:一种基于表面等离子体共振增强型极磁光克尔效应的新型电流传感机制

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A novel current-detection mechanism based on surface plasmon resonance-enhanced polar magneto-optical effect is presented in this paper. Through the introduction of surface plasmon resonance technology- and combination with hybrid nano-magnetic films, current monitoring is indirectly realized by the real-time detection of magnetic field excited around the wire. First, surface plasmon polaritons (SPPs) excitation properties of Au/Co/Au are analyzed to choose the most appropriate sample which can support most intensive SPPs. Then, the effects of surface plasmon resonance in the magneto-optical activity of chosen trilayer are studied. An enhancement of the magneto-optical Kerr signal under SPPs excitation as compared with that obtained without SPPs excitation is observed. The magneto-optical enhancement ratio varies when Co become thicker and get a maximum with a certain thickness. Meanwhile, the 4*4 transfer matrix method is used to simulate the SPR spectra, polar MO Kerr spectra and the enhancement effects. Finally, an electromagnetic coil is designed. Tests show that when the magnetic field gets 338Guass, the polar Kerr rotation of chosen sample changes 0.057° . Experimental and theoretical results indicate that this new kind of magnetic sensor which based on SPR-enhanced polar magneticoptical effect can be applied in the detection of current.
机译:本文提出了一种基于表面等离子体共振增强极性光学效应的新型电流检测机构。通过引入表面等离子体共振技术 - 和与混合纳米磁性膜的组合,通过在线围绕电线激发的磁场的实时检测间接地实现电流监测。首先,分析Au / Co / Au的表面等离子体(SPP)激发性能,选择最合适的样品,可以支持最强烈的SPP。然后,研究了表面等离子体共振在所选择的三层晶光学活性中的影响。观察到与没有SPPS激发的没有SPPS激发的SPPS激励下的磁光kerr信号的增强。当CO变厚时,磁光增强比变化并获得一定厚度的最大值。同时,4 * 4传输矩阵方法用于模拟SPR光谱,极性Mo Kerr光谱和增强效果。最后,设计了电磁线圈。测试表明,当磁场得到338次时,所选样品的极性克尔旋转改变0.057°。实验和理论结果表明,这种基于SPR增强极性幂幂效果的新种类磁传感器可以应用于电流的检测。

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