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Multiple-channel guided mode resonance Brewster filter with controllable spectral separation

机译:具有可控光谱分离的多通道导模共振Brewster滤波器

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摘要

In this work, a single-layer, multiple-channel guided mode resonance (GMR) Brewster filter with controllable spectral separation is proposed using the plane waveguide method and rigorous coupled-wave analysis. Based on the normalized eigenvalue equation, the controllability of the spectral separation is analyzed when the fill ratio of the grating layer is changed while its effective index is identical to that of the substrate. The location and the separation between resonances can be specifically controlled by modifying the fill ratio of the grating layer. In contrast to the ordinary GMR filter, where the location of the resonances is material dependent, it is demonstrated that the spectral separation for the first and second resonances can be linearly controlled by altering the fill ratio of the grating layer. In addition, the maximal shift of the second resonance is up to 5% of the first resonant wavelength using the single-layer Brewster filter.
机译:在这项工作中,使用平面波导方法和严格的耦合波分析,提出了一种具有可控光谱分离的单层,多通道导模谐振(GMR)Brewster滤波器。基于归一化特征值方程,当光栅层的填充率发生变化而其有效折射率与基板的折射率相同时,分析了光谱分离的可控性。谐振之间的位置和间隔可以通过修改光栅层的填充率来具体控制。与普通的GMR滤波器相反,在普通的GMR滤波器中,谐振的位置与材料有关,这表明可以通过改变光栅层的填充率来线性控制第一和第二谐振的光谱分离。此外,使用单层布鲁斯特滤光片,第二共振的最大位移最高可达第一共振波长的5%。

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