Afshar Shahraam, Warren-Smith Stephen C, Monro Tanya M
Centre of Expertise in Photonics, School of Chemistry & Physics, University of Adelaide, Adelaide, SA 5005, Australia.
Opt Express. 2007 Dec 24;15(26):17891-901. doi: 10.1364/oe.15.017891.
We develop a generic model of excitation and fluorescence recapturing within filled microstructured optical fibres (MOFs) with arbitrary structure and demonstrate that the light-matter overlap alone does not determine the optimal fibre choice. Fibre designs with sub-wavelength features and high-index glasses exhibit localised regions of high intensity, and we show that these regions can lead to approximately two orders of magnitude enhancement of fluorescence recapturing. Here we show how this regime can be exploited for sensing and demonstrate experimentally in-fibre excitation and fluorescence recapturing within a filled, solid-core MOF.
我们开发了一种适用于具有任意结构的填充微结构光纤(MOF)的激发和荧光再捕获通用模型,并证明仅光与物质的重叠并不能决定最佳光纤选择。具有亚波长特征的光纤设计和高折射率玻璃会出现高强度的局部区域,我们表明这些区域可使荧光再捕获增强约两个数量级。在此,我们展示了如何利用这种机制进行传感,并在填充的实心芯MOF内通过实验证明了光纤内激发和荧光再捕获。