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Directional Emission from Metal-Dielectric-Metal Structures: Effect of Mixed Metal Layers Dye Location and Dielectric Thickness

机译:金属-介电金属结构的定向发射:混合金属层染料位置和介电厚度的影响

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摘要

Metal-dielectric-metal (MDM) structures provide directional emission close to the surface normal, which offers opportunities for new design formats in fluorescence based applications. The directional emission arises due to near-field coupling of fluorophores with the optical modes present in the MDM substrate. Reflectivity simulations and dispersion diagrams provide a basic understanding of the mode profiles and the factors that affect the coupling efficiency and the spatial distribution of the coupled emission. This work reveals that the composition of the metal layers, the location of the dye in the MDM substrate and the dielectric thickness are important parameters that can be chosen to tune the color of the emission wavelength, the angle of observation, the angular divergence of the emission and the polarization of the emitted light. These features are valuable for displays and optical signage.
机译:金属介电金属(MDM)结构提供接近表面法线的定向发射,这为基于荧光的应用提供了新设计格式的机会。定向发射是由于荧光团与MDM基板中存在的光学模式的近场耦合而产生的。反射率仿真和色散图提供了对模式轮廓以及影响耦合效率和耦合发射的空间分布的因素的基本了解。这项工作表明,金属层的组成,染料在MDM基板中的位置以及介电层厚度是重要的参数,可以选择这些参数来调整发射波长的颜色,观察角度,发射角的发散角。发射和发射光的偏振。这些功能对于显示器和光学标牌很有价值。

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