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Fabry-Perot cavity resonance enabling highly polarization-sensitive double-layer gold grating

机译:Fabry-Perot腔共振实现高度偏振敏感的双层金光栅

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We present experimental and theoretical investigations on the polarization properties of a single- and a double-layer gold (Au) grating, serving as a wire grid polarizer. Two layers of Au gratings form a cavity that effectively modulates the transmission and reflection of linearly polarized light. Theoretical calculations based on a transfer matrix method reveals that the double-layer Au grating structure creates an optical cavity exhibiting Fabry-Perot (FP) resonance modes. As compared to a single-layer grating, the FP cavity resonance modes of the double-layer grating significantly enhance the transmission of the transverse magnetic (TM) mode, while suppressing the transmission of the transverse electric (TE) mode. As a result, the extinction ratio of TM to TE transmission for the double-layer grating structure is improved by a factor of approximately 8 in the mid-wave infrared region of 3.4–6?μm. Furthermore, excellent infrared imagery is obtained with over a 600% increase in the ratio of the TM-output voltage (Vθ?=?0°) to TE-output voltage (Vθ?=?90°). This double-layer Au grating structure has great potential for use in polarimetric imaging applications due to its superior ability to resolve linear polarization signatures.
机译:我们目前对用作线栅偏振器的单层和双层金(Au)光栅的偏振特性的实验和理论研究。两层Au光栅形成一个空腔,可有效调制线性偏振光的透射和反射。基于转移矩阵方法的理论计算表明,双层Au光栅结构可创建显示Fabry-Perot(FP)共振模式的光学腔。与单层光栅相比,双层光栅的FP腔共振模式显着增强了横向磁(TM)模式的透射,同时抑制了横向电(TE)模式的透射。结果,双层光栅结构的TM与TE透射的消光比在3.4-6?μm的中波红外区域提高了约8倍。此外,TM输出电压(Vθθ=θ0°)与TE输出电压(Vθθ=θ90°)之比增加了600%以上时,可获得优异的红外图像。这种双层Au光栅结构具有出色的分辨线性偏振特征的能力,因此在偏振成像应用中具有巨大的潜力。

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