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Spectral Dependence of Subwavelength Slit Geometry

机译:亚波长狭缝几何的光谱相关性

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For two decades, extraordinary optical transmission (EOT) has amplified exploration into subwavelength systems. Researchers have previously suggested exploiting the spectrally selective electromagnetic field confinement of subwavelength slits for multispectral detectors. Utilizing the finite-difference frequency domain (FDFD) method, we examine electromagnetic field confinement in both 2-dimensional and 3-dimensional scenarios from 2.5 to 6 microns, i.e. midwave infrared (MWIR). We explore the trade space of deep subwavelength slits and its impact on resonant enhancement of the electromagnetic field. This builds fundamental understanding of the coupling mechanisms allowing for prediction of resonant spectral behavior based on slit geometry and material properties.
机译:二十年来,非凡的光传输(EOT)扩大了对亚波长系统的探索。研究人员以前曾建议利用多波长探测器的亚波长狭缝的光谱选择性电磁场限制。利用有限差分频域(FDFD)方法,我们研究了从2.5到6微米的2维和3维场景中的电磁场限制,即中波红外(MWIR)。我们探索深亚波长缝隙的交易空间及其对电磁场共振增强的影响。这建立了对耦合机制的基本理解,从而可以根据狭缝的几何形状和材料特性预测共振光谱行为。

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