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Sensing of Surface and Bulk Refractive Index Using Magnetophotonic Crystal with Hybrid Magneto-Optical Response

机译:用混合磁光响应使用磁芯晶体的表面和散装折射率的感应

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摘要

We propose an all-dielectric magneto-photonic crystal with a hybrid magneto-optical response that allows for the simultaneous measurements of the surface and bulk refractive index of the analyzed substance. The approach is based on two different spectral features of the magneto-optical response corresponding to the resonances in p- and s-polarizations of the incident light. Angular spectra of p-polarized light have a step-like behavior near the total internal reflection angle which position is sensitive to the bulk refractive index. S-polarized light excites the TE-polarized optical Tamm surface mode localized in a submicron region near the photonic crystal surface and is sensitive to the refractive index of the near-surface analyte. We propose to measure a hybrid magneto-optical intensity modulation of p-polarized light obtained by switching the magnetic field between the transverse and polar configurations. The transversal component of the external magnetic field is responsible for the magneto-optical resonance near total internal reflection conditions, and the polar component reveals the resonance of the Tamm surface mode. Therefore, both surface- and bulk-associated features are present in the magneto-optical spectra of the p-polarized light.
机译:我们提出了一种具有混合磁光响应的全介电磁光晶体,其允许同时测量分析的物质的表面和块折射率。该方法基于对应于入射光的P-和S偏振中的谐振的磁光响应的两种不同的光谱特征。 P偏振光的角度光谱具有靠近总内部反射角附近的阶梯状行为,其位置对堆积折射率敏感。 S-偏振光激发在光子晶体表面附近的亚微米区域中定位的TE偏振光光学TAMM表面模式,对近表面分析物的折射率敏感。我们建议测量通过在横向和极性配置之间切换磁场而获得的p偏振光的混合磁光强度调制。外部磁场的横向分量负责磁光谐振靠近全内部反射条件附近,极性部件揭示了TAMM表面模式的共振。因此,表面和批量相关特征都存在于P偏振光的磁光谱中。

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