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首页> 外文期刊>Laser & photonics reviews >Brightening and Guiding Single-Photon Emission by Plasmonic Waveguide–Slit Structures on a Metallic Substrate
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Brightening and Guiding Single-Photon Emission by Plasmonic Waveguide–Slit Structures on a Metallic Substrate

机译:金属衬底上的等离子波导管-缝隙结构增亮并引导单光子发射

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摘要

By designing a plasmonic waveguide-slit structure (a nanoslit etched in a silver nanowire) on a silver substrate, an ultrahigh Purcell factor and ultralarge figure of merit (FOM) are numerically predicted. Because of the large field enhancement (>150 times the incident field) and the ultrasmall optical volume (V approximate to 2 x 10(-5)lambda(3)) of the resonant mode in the metallic nanoslit, the simulations show that the Purcell factor in the system can reach up to F-P = 1.68 x 10(5), which is more than ten times the maximum Purcell factor in previous work (by placing metallic nanoparticles on a metal surface with a nanogap). Because of the utilization of a silver substrate rather than the common dielectric substrate, the mode cutoff of the surface plasmon polariton (SPP) waveguide mode is completely eliminated, which provides a large selection range of the nanowire radii to support the resonant mode in the nanoslit. Moreover, the SPP propagation length is significantly increased by more than 30 times. As a result, an ultralarge FOM of 1.40 x 10(7) is obtained, which is more than 80 times the maximum FOM in previous work where the metallic nanowire is placed on or surrounded by dielectric materials.
机译:通过在银衬底上设计等离子体激元波导狭缝结构(在银纳米线中蚀刻的纳米狭缝),可以对超高赛尔因数和超大品质因数(FOM)进行数值预测。由于金属纳米缝隙中共振模式的大场增强(> 150倍入射场)和超小光学体积(V约2 x 10(-5)lambda(3)),模拟显示系统中的最大因子可以达到FP = 1.68 x 10(5),这是先前工作中最大赛尔因子的十倍以上(通过将金属纳米颗粒放置在具有纳米间隙的金属表面上)。由于使用了银基板而不是普通的电介质基板,表面等离子体激元(SPP)波导模式的模式截止被完全消除,这为纳米线半径提供了较大的选择范围以支持纳米缝隙中的共振模式。此外,SPP传播长度显着增加了30倍以上。结果,获得了1.40 x 10(7)的超大FOM,这是以前的工作的最大FOM的80倍,在以前的工作中,金属纳米线被放置在介电材料上或被介电材料包围。

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