Warren-Smith Stephen C, Afshar Shahraam, Monro Tanya M
Centre of Expertise in Photonics, Institute for Photonics & Advanced Sensing, School of Chemistry & Physics, University of Adelaide, Adelaide, SA 5005, Australia.
Opt Express. 2010 Apr 26;18(9):9474-85. doi: 10.1364/OE.18.009474.
A model for the fluorescence sensing properties of small-core high-refractive-index fibers (optical nanowires) is developed and compared quantitatively with experiment. For the first time, higher-order modes and loss factors relevant to optical nanowires are included, which allows the model to be compared effectively with experiment via the use of fluorophore filled suspended optical nanowires. Numerical results show that high-index materials are beneficial for fluorescence-based sensing. However, both numerical and experimental results show that the fluorescence signal is relatively insensitive to core size, except for low concentration sensing where nanoscale fiber cores are advantageous due to the increased evanescent field power.
开发了一种用于小芯高折射率光纤(光学纳米线)荧光传感特性的模型,并与实验进行了定量比较。首次纳入了与光学纳米线相关的高阶模和损耗因子,这使得该模型能够通过使用填充荧光团的悬浮光学纳米线有效地与实验进行比较。数值结果表明,高折射率材料有利于基于荧光的传感。然而,数值和实验结果均表明,除了低浓度传感外,荧光信号对芯尺寸相对不敏感,在低浓度传感中,由于倏逝场功率增加,纳米级光纤芯具有优势。