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Generation of Red Color and Near Infrared Bandpass Filters Using Nano-scale, Plasmonic Structures

机译:利用纳米等离子结构生成红色和近红外带通滤光片

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Extraordinary/Enhanced optical transmission (EOT) is studied in the realization of plasmonic based filters in the visible range and near infrared spectrum for the purpose of substituting the Bayer-pattern filter with a new CMOS-compatible filter which can be easily tuned to provide different filter spectra. The niters studied in this paper are based on nano-structured 150 nm thick Aluminum (Al) layer sandwiched between silicon dioxide (SiO_2) layers. The resonance wavelengths achieved by the niters are at 700 nm and 950 nm. Three parameters are used for tuning the two niters, i.e., aperture area, the period, and the holes arrangement (square or rhombic lattice). The filter is based on the principle of surface plasmon polaritons (SPPs), where the electromagnetic waves of the incident light couples with the free charges of the metal at the metal-dielectric interface. EOT is observed when the metal is structured with apertures such as rectangular, circular, cross, bowtie, etc. The resonance frequency in that case depends on the shape of the aperture, material used, the size of the apertures, the period of the array, and the surrounding material. The fabricated two filters show EOT at wavelengths as designed and simulated with blueshift in the peak location.
机译:为了实现在可见光范围和近红外光谱中的等离激元滤波器的实现,研究了非凡/增强型光传输(EOT),目的是用新型CMOS兼容滤波器替换拜耳模式滤波器,该滤波器易于调整以提供不同的过滤光谱。本文研究的硝子基于夹在二氧化硅(SiO_2)层之间的纳米结构的150纳米厚的铝(Al)层。硝子所达到的共振波长为700 nm和950 nm。使用三个参数来调整两个niters,即孔径面积,周期和孔排列(正方形或菱形晶格)。滤光片基于表面等离激元极化子(SPPs)原理,其中入射光的电磁波在金属-电介质界面处与金属的自由电荷耦合。当金属具有诸如矩形,圆形,十字形,领结形等孔的结构时,会观察到EOT。在这种情况下,共振频率取决于孔的形状,所用的材料,孔的大小,阵列的周期,以及周围的材料。制成的两个滤光片在峰位置蓝移设计和模拟的波长下显示EOT。

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