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首页> 外文期刊>Nanotechnology >Plasmon-emitter interaction using integrated ring grating-nanoantenna structures
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Plasmon-emitter interaction using integrated ring grating-nanoantenna structures

机译:使用集成环光栅 - 纳米结构结构的等离子体 - 发射极相互作用

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摘要

Overcoming the diffraction limit to achieve high optical resolution is one of the main challenges in the fields of plasmonics, nanooptics and nanophotonics. In this work, we introduce novel plasmonic structures consisting of nanoantennas (nanoprisms, single bowtie nanoantennas and double bowtie nanoantennas) integrated in the center of ring diffraction gratings. Propagating surface plasmon polaritons (SPPs) are generated by the ring grating and coupled with localized surface plasmons (LSPs) at the nanoantennas exciting emitters placed in their gap. SPPs are widely used for optical waveguiding but provide low resolution due to their weak spatial confinement. In contrast, LSPs provide excellent sub-wavelength confinement but induce large losses. The phenomenon of SPP-LSP coupling witnessed in our structures allows for achieving more precise focusing at the nanoscale, causing an increase in the fluorescence emission of the emitters. Finite-difference time-domain simulations as well as experimental fabrication and optical characterization results are presented to study plasmon-emitter coupling between an ensemble of dye molecules and our integrated plasmonic structures. A comparison is given to highlight the importance of each structure on the photoluminescence and radiative decay enhancement of the molecules.
机译:克服衍射限制以实现高光学分辨率是群体,纳米光学和纳米泳道领域的主要挑战之一。在这项工作中,我们引入了集成在环衍射光栅中心的纳米宁纳米(纳米棱镜,单弓纳米纳米南纳纳米纳米纳米纳米的新型等离子体结构。传播表面等离子体极性官(SPP)由环形光栅产生并与纳米环绕的局部化学元件(LSP)耦合,沿纳米膨胀的发射器放置在其间隙中。 SPPS广泛用于光波导,但由于其弱空间限制,提供低分辨率。相比之下,LSP提供优异的亚波长约束,但诱导大量损失。在我们的结构目睹SPP-LSP耦合的现象允许实现更精确的在纳米级聚焦,引起发射的荧光发射的增加。有限差分时域仿真以及实验制造和光学表征结果呈现给研究等离子体 - 发射极的染料分子和我们的集成等离子体激元结构的集合之间的耦合。给出了比较来突出每个结构对分子的光致发光和辐射衰减的重要性。

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