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Gap enhanced fluorescence as a road map for the detection of very weakly fluorescent emitters from visible to ultraviolet

机译:间隙增强的荧光作为检测从可见光到紫外光的极弱荧光发射器的路线图

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摘要

We analyze the enhancement of the rates of both the emission and the far field radiation for dipoles placed in the gap between a metallic nanorod, or nanosphere, and a metallic substrate. For wavelengths between 150 nm and 650 nm, the response of the gapped nanostructures considered in this work is dominated by few principal modes of the nanoparticle, which include self-consistently the effect of the substrate. For wavelengths shorter than 370 nm, the far field radiative enhancements of aluminum nanostructures are significantly higher than those for gold or silver. With aluminum, bright mode resonances are tunable over tens or hundreds of nanometers by changing the size of the nanoparticle and have far field radiative enhancements of up to three orders of magnitude. These results provide a road map to label-free detection of many emitters too weakly fluorescent for present approaches.
机译:我们分析了放置在金属纳米棒(或纳米球)与金属基底之间的缝隙中的偶极子的发射率和远场辐射率的提高。对于介于150 nm和650 nm之间的波长,在这项工作中考虑的带隙纳米结构的响应主要由纳米颗粒的几种主要模式决定,其中主要包括基体的自洽效应。对于短于370nm的波长,铝纳米结构的远场辐射增强显着高于金或银。对于铝,通过改变纳米粒子的尺寸,亮模式共振可在数十或数百纳米范围内调节,并且具有高达三个数量级的远场辐射增强。这些结果提供了一种路线图,以无标签的方式检测许多目前荧光强度太弱的发射器。

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