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Influence of Subwavelength Grating Asymmetry on Long-Wavelength Infrared Transmittance Filters

机译:亚波长光栅不对称对长波长红外透射滤光片的影响

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摘要

Subwavelength dielectric gratings provide a means of narrowband spectral filtering by coupling to quasi-guided leaky modes, providing a high reflectivity background and narrowband transmittance via Fano resonance behavior. Geometrically asymmetric two-step gratings enable normal incidence filtering by accessing symmetry-protected leaky modes. The impact of asymmetry on leaky mode coupling and optical filter response are studied via simulation and described by the Fano resonance theory. The influence of asymmetry introduced by grating step height and angular cone of incidence are verified experimentally in silicon/air gratings in the long-wavelength infrared (8–14 μm).
机译:亚波长介电光栅通过耦合到准引导的泄漏模式,提供了窄带频谱滤波的手段,通过Fano谐振行为提供了高反射率背景和窄带透射率。几何上不对称的两步光栅通过访问受对称保护的泄漏模式,实现了法向入射滤波。通过仿真研究了不对称性对泄漏模式耦合和光学滤波器响应的影响,并通过法诺共振理论进行了描述。在长波长红外(8–14 n μ nm)。

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