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Resonant waveguide grating (RWG): overcoming the problem of angular sensitivity by conical, broad-band illumination for fluorescence measurements

机译:谐振波导光栅(RWG):通过锥形宽带照明进行荧光测量,克服了角度灵敏度问题

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摘要

Most biomedical applications are based on the light-matter interaction; the measurement of absorption, scattering or fluorescence at the visible and near visible region of the electromagnetic spectrum. This can be enhanced with nanophotonical devices. Most often, metallic nanoparticles are used for this purpose. However, metallic-as well as non-metallic-nanostructures have their limitations. In this report we introduce an all-dielectric structure, namely resonant waveguide grating (RWG), which can respond to the demands of optical enhancement of measurements. RWG's are, however, notorious for their angular sensitivity, which can be problematic, particularly in terms of enhancing fluorescence. We introduce a solution to this problem, which could enable RWG's to be harnessed for the benefit of cost-efficient and sensitive fluorescence measurements in the field of life sciences. This report represents a 30-fold fluorescence enhancement using RWG within a conventional fluorescence microscope and the theoretical calculations support our idea.
机译:大多数生物医学应用都是基于光-物质相互作用。在电磁波谱的可见和近可见区域的吸收,散射或荧光的测量。纳米光子器件可以增强这一点。大多数情况下,金属纳米颗粒用于此目的。但是,金属和非金属纳米结构都有其局限性。在本报告中,我们介绍了一种全介电结构,即谐振波导光栅(RWG),它可以响应光学增强测量的需求。但是,RWG的角度灵敏度是众所周知的,这可能是个问题,特别是在增强荧光方面。我们针对此问题推出了一种解决方案,可以利用RWG来实现生命科学领域中具有成本效益的灵敏荧光测量。该报告代表了在常规荧光显微镜中使用RWG进行的30倍荧光增强,理论计算支持了我们的想法。

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