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Spatial positioning of photon emitters in a plasmonic illumination device

机译:等离子体照明设备中光子发射器的空间定位

摘要

There is provided an illumination device (100) comprising: a substrate (104); an optically transmissive first layer (106) arranged on the substrate; a photon emitting layer (108), arranged on the optically transmissive first layer and comprising a photon emitting material configured to receive energy from an energy source and to emit light having a predetermined wavelength; a periodic plasmonic antenna array, arranged on the substrate and embedded within the first layer, and comprising a plurality of individual antenna elements (114) arranged in an antenna array plane, the plasmonic antenna array being configured to support a first lattice resonance at the predetermined wavelength, arising from coupling of localized surface plasmon resonances in the individual antenna elements to photonic modes supported by the system comprising the plasmonic antenna array and the photon emitting layer, wherein the plasmonic antenna array is configured to comprise plasmon resonance modes such that light emitted from the plasmonic antenna array has an anisotropic angle distribution; and wherein the photon emitting layer is arranged at a distance from the antenna array plane corresponding to a location of maximum field enhancement for light out-coupling resulting from the plasmonic-photonic lattice resonances.
机译:提供了一种照明装置( 100 ),其包括:基板( 104 );以及基板。布置在基板上的透光的第一层( 106 );光子发射层( 108 ),其布置在透光的第一层上,并且包括被配置为从能量源接收能量并发射具有预定波长的光的光子发射材料;周期性等离子天线阵列,其布置在基板上并嵌入第一层内,并且包括布置在天线阵列平面中的多个单独的天线元件( 114 ),等离子天线阵列配置为支持预定波长的第一晶格共振,其是由于各个天线元件中的局部表面等离子体激元共振与由包括等离子体激元天线阵列和光子发射层的系统所支持的光子模式耦合而引起的,其中等离子体激元天线阵列被配置为包括等离子体激元共振模式,使等离子天线阵列发出的光具有各向异性的角度分布;其中,光子发射层被布置在距天线阵列平面一定距离处,该距离对应于用于由等离振子-光子晶格共振产生的光输出的最大场增强的位置。

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