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首页> 外文期刊>International Journal of Nanotechnology >Plasmon-enhanced optical transmission of nanostructured metallic multilayers
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Plasmon-enhanced optical transmission of nanostructured metallic multilayers

机译:纳米结构金属多层的等离子体增强光传输

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Surface plasmons (SPs) - charge oscillations on metallo-dielectric interfaces - offer the possibility of controlling light at a scale much smaller than its wavelength, even down to the nanometre scale for visible wavelengths. Experiments have been performed to study the influence of SPs on the optical transmission of metallic multilayers in which one of the layers has been patterned at the nanometre scale to excite localised and extended SP modes. Films with linear gratings or two-dimensional hole arrays have been studied, and exceptionally-high transmission levels (up to 39%) are measured for these otherwise-opaque systems. The transmission resonances can be designed to be much narrower than for an equivalent Fabry-Perot fdter, and can be tuned with geometrical parameters (film thicknesses and/or grating dimensions) or illuminations conditions (angle of incidence or polarisation). The measured dispersion of the transmission maxima agrees with the theoretical dispersion of extended surface plasmon polariton (SPP) modes on a planar metal film, which strongly suggests that the excitation of these SPP modes is responsible for the transmission features. This is further supported by rigorous electromagnetic simulations.
机译:表面等离激元(SP)-金属介电界面上的电荷振荡-提供了控制光的能力,该光的大小远小于其波长,甚至对于可见光波长甚至可以降至纳米级。已经进行了实验以研究SP对金属多层的光学透射的影响,其中金属层之一已经在纳米尺度上被图案化以激发局部和扩展的SP模式。已经研究了具有线性光栅或二维孔阵列的薄膜,并且对于这些原本不透明的系统,测量到了极高的透射率(高达39%)。可以将传输共振设计为比等效的Fabry-Perot滤波器窄得多,并且可以通过几何参数(膜厚度和/或光栅尺寸)或照明条件(入射角或偏振)进行调谐。测得的透射最大值的色散与平面金属膜上扩展表面等离子体激元极化(SPP)模的理论色散一致,这强烈表明这些SPP模的激发是透射特征的原因。严格的电磁仿真进一步支持了这一点。

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