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Two-layered metallic film-induced surface plasmon polariton for fluorescence emission enhancement in on-chip waveguide

机译:两层金属膜诱导的表面等离子体激元极化,用于增强片上波导中的荧光发射

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摘要

We demonstrate an enhancement of fluorescence emission due to bimetallic silver-gold film-induced surface plasmon wave extension.Rhodamine B (RhB) dyes were excited by the evanescent wave field produced from surface plasmon polaritons excited on metal-deposited sections along an embedded strip waveguide.Various silver-gold combinations were used to quantify for the evanescent field enhancement.The underlying silver yields better evanescent field enhancement,while the overlying gold ensures that the stability of the sensing surface is not compromised.In comparison to the conventional single gold film surface plasmon resonance (SPR) configuration,the two-layered metallic structure is capable of enhancing the surface plasmon polariton (SPP) evanescent field considerably,as verified experimentally by the ca.4.0 times improvement in the RhB fluorescence emission.The compact waveguide structure and improved electric field probing depth can potentially be exploited for on-chip SPR-fluorescence excitation of less concentrated fluorophore-labelled biological and chemical analytes,with a capability of massively parallel processing for high throughput screening.
机译:我们展示了由于双金属银-金膜诱导的表面等离激元波扩展而增强的荧光发射。若丹明B(RhB)染料被表面等离子体激元在金属沉积部分沿嵌入式条形波导激发的the逝波场激发而excited逝波场激发。各种银-金组合用于量化消逝场增强。下面的银产生更好的消逝场增强,而上覆的金确保不损害传感表面的稳定性。与常规的单金膜表面相比等离子体共振(SPR)构型,两层金属结构能够显着增强表面等离子体激元(SPP)瞬逝场,通过RhB荧光发射的约4.0倍的实验验证。紧凑的波导结构和改进片上SPR荧光可以潜在地利用电场探测深度激发浓度较低的荧光团标记的生物和化学分析物,具有大规模并行处理的能力,可进行高通量筛选。

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