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Planar Waveguides for Fluorescence-Based Biosensing: Optimization and Analysis

机译:平面波导基于荧光的生物传感:优化和分析

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摘要

Optimization of planar waveguides for fluorescence biosensing is presented in this paper. In particular, the authors show that optical (refractive index) and geometrical parameters have a strong influence on the efficiency of excitation and collection of fluorescent signals. Numerical analyses show that a single-mode slab waveguide, operating at its fundamental transverse magnetic mode and near its cutoff point, results in an efficient fluorescence excitation when employed as evanescent wave biosensor. A high-refractive index contrast is demonstrated to be the key parameter for an efficient fluorescence collection. Other geometries that are an alternative to the classical slab waveguide may result in an improvement of the fluorescence excitation and collection efficiencies.
机译:本文介绍了用于荧光生物传感的平面波导的优化。特别是,作者表明,光学(折射率)和几何参数对激发和收集荧光信号的效率有很大影响。数值分析表明,单模平板波导在其基本横向磁模下并在其截止点附近工作,当用作van逝波生物传感器时,可产生有效的荧光激发。高折射率对比度被证明是有效收集荧光的关键参数。替代经典平板波导的其他几何形状可以导致荧光激发和收集效率的提高。

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