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Magneto-optical kerr effect in resonant subwavelength nanowire gratings

机译:共振亚波长纳米线光栅中的磁光克尔效应

摘要

Periodic arrays of nanorods can present a resonant response at specific geometric conditions. We use a multiple scattering approach to analyze the optical response of subwavelength nanowire gratings made of arbitrary anisotropic materials. When the rods are made of magneto-optical dielectrics we show that there is a complex interplay between the geometric resonances of the grating and the magneto-optical Kerr effects (MOKE) response. As we will show, for a given polarization of the incident light, a resonant magneto-optical response can be obtained by tuning the incidence angle and grating parameters to operate near the resonance condition for the opposite polarization. Our results could be important to understand and optimize MOKE structures and devices based on resonant subwavelength gratings and could open new perspectives in sensing applications
机译:纳米棒的周期性阵列可以在特定的几何条件下呈现共振响应。我们使用多重散射方法来分析由任意各向异性材料制成的亚波长纳米线光栅的光学响应。当棒由磁光电介质制成时,我们证明光栅的几何共振与磁光克尔效应(MOKE)响应之间存在复杂的相互作用。正如我们将显示的,对于给定的入射光偏振,可以通过调整入射角和光栅参数以在相反偏振的谐振条件附近工作来获得谐振磁光响应。我们的结果对于理解和优化基于共振亚波长光栅的MOKE结构和设备可能很重要,并且可能为传感应用开辟新的前景

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