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Spatial remote luminescence enhancement by a half-cylindrical Au groove

机译:通过半圆柱形金槽增强空间远程发光

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Enhancing the luminescence emission from upconversion nanoparticles (UCNPs) is crucial to reduce the limits of biosensing based on UCNPs. Photonic crystal and surface plasmon structures have been used to enhance the emission of phosphor, while the enhancement distance is only limited to the near-field range. For in vitro biodetection, the distance between the UCNP and the substrate is usually in the far-field range. This work proposes the use of a half-cylindrical gold groove to enhance the emission of UCNPs even when the nanoparticles are at a far-field distance from the substrate. Due to scattering, constructive interference and coupling of optical modes in the Au groove, large-area/far-field range resonance modes can be created. Efficient resonance coupling between the optical mode and the excitation/emission of UCNPs can occur in the far-field range, which is able to enhance the absorption, quantum yield, extraction and collection of emission of UCNPs. The enhancement region is not only limited to the near-field range of the structure but also expands to the far-field range of the structure. By comparing different shapes and materials of the grooves, the proposed structure can improve the emission by 8.25 times when the UCNP is 4.4 gm away from the bottom of the groove compared with the bare glass. Besides, our structure is experimentally feasible and will greatly contribute to the development of high sensitivity and high SNR fluorescence biosensors.
机译:增强上转换纳米颗粒(UCNP)的发光对于降低基于UCNP的生物传感的限制至关重要。光子晶体和表面等离子体激元结构已用于增强磷光体的发射,而增强距离仅限于近场范围。对于体外生物检测,UCNP与底物之间的距离通常在远场范围内。这项工作提出使用半圆柱形金槽来增强UCNPs的发射,即使纳米颗粒离基板很远。由于金凹槽中的散射,相长干涉和光学模式的耦合,可以创建大面积/远场范围的共振模式。光学模式与UCNPs激发/发射之间可以发生有效的共振耦合,这可以增强UCNPs的吸收,量子产率,提取和收集发射。增强区域不仅限于结构的近场范围,而且扩展到结构的远场范围。通过比较凹槽的不同形状和材料,与裸玻璃相比,当UCNP距凹槽底部4.4 gm时,所提出的结构可将发射提高8.25倍。此外,我们的结构在实验上是可行的,并将极大地促进高灵敏度和高SNR荧光生物传感器的开发。

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