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用于高性能双通道传感的可见-近红外磁光克尔效应增强型介电-金属混合结构

VIS-NIR TMOKE enhanced dielectric-metal hybrid structure for high performance dual-channel sensing.

作者信息

Li Lixia, Du Linqiao, Zong Xueyang, Liu Yufang

出版信息

Opt Express. 2023 Oct 23;31(22):35880-35891. doi: 10.1364/OE.502432.

Abstract

Magneto-plasmon sensors based on the transverse magneto-optical Kerr effect (TMOKE) have been extensively studied in recent years. In this paper, we theoretically propose a hybrid structure composed of a one-dimensional bismuth iron garnet: yttrium iron garnet (BIG: YIG) nanowire arrays and thin film stack, which is grown on an infinite thick silicon wafer. The thin film stack, from top to bottom, consists of the following layers: BIG: YIG, SiO, and Au. By exciting the magnetic dipole resonance mode between the cylindrical nanowires and the SPP mode on the surface of the Au film, dual-channel sensing has been achieved in both visible and infrared spectra. The results demonstrate that the TMOKE response spectrum of the structure supports ultra-narrow linewidths of 0.03 nm in the visible light range and 1.54 nm in the infrared range. By changing the refractive index of the analyte, the detected sensitivity of the sensor system in visible and infrared bands is 553 nm RIU and 285 nm RIU, and the Figure of merit (FOM) can reach up to 69125 RIU and 303 RIU, respectively. This work provides a theoretical basis and a feasible approach for the design of dual channel gas sensors.

摘要

近年来,基于横向磁光克尔效应(TMOKE)的磁等离子体传感器受到了广泛研究。在本文中,我们从理论上提出了一种由一维铋铁石榴石:钇铁石榴石(BIG: YIG)纳米线阵列和薄膜堆栈组成的混合结构,该结构生长在无限厚的硅片上。薄膜堆栈从顶部到底部由以下层组成:BIG: YIG、SiO和Au。通过激发圆柱形纳米线与Au膜表面的表面等离激元极化激元(SPP)模式之间的磁偶极子共振模式,在可见光和红外光谱中都实现了双通道传感。结果表明,该结构的TMOKE响应光谱在可见光范围内支持0.03 nm的超窄线宽,在红外范围内支持1.54 nm的超窄线宽。通过改变分析物的折射率,传感器系统在可见光和红外波段的检测灵敏度分别为553 nm/RIU和285 nm/RIU,品质因数(FOM)分别可达69125 RIU和303 RIU。这项工作为双通道气体传感器的设计提供了理论依据和可行的方法。

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