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首页> 外文期刊>ACS nano >Generating and manipulating higher order Fano resonances in dual-disk ring plasmonic nanostructures
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Generating and manipulating higher order Fano resonances in dual-disk ring plasmonic nanostructures

机译:在双盘环等离子体纳米结构中产生和操纵高阶Fano共振

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Figure Persented: In this article, we investigate higher order (quadrupolar, octupolar, hexadecapolar, and triakontadipolar) Fano resonances generated in disk ring (DR) silver plasmonic nanostructures. We find that the higher order Fano resonances are generated when the size of the disk is reduced and falls into a certain range. With dual-disk ring (DDR) nanostructures, a rich set of tunable Fano line shapes is provided. More specifically, we report our observations on the optical behavior of the DDRs including asymmetric cases either in two disks with different sizes or their asymmetric locations inside the ring. In the case of symmetric dual-disk ring (SDDR) nanostructures, we demonstrate that the quadrupolar and the hexadecapolar Fano resonances are suppressed, which can reduce the cross-talk in spectroscopic measurements, while the octupolar and the triakontadipolar Fano resonances are enhanced. The potential of using the studied plasmonic nanostructures as biochemical sensors is evaluated with the figure of merit (FOM) and the contrast ratio (CR). The values of the FOM and the CR achieved using the triakontadipolar Fano resonance in the SDDR are 17 and 57%, respectively. These results indicate that the SDDRs could be developed into a high-performance biochemical sensor in the visible wavelength range.
机译:感想的图:在本文中,我们研究了在盘环(DR)银等离激元纳米结构中产生的高阶(四极,八极,十六极和三偶极)法诺共振。我们发现,当磁盘尺寸减小并落入一定范围时,会产生更高阶的Fano共振。利用双盘环(DDR)纳米结构,提供了一组丰富的可调Fano线形。更具体地说,我们报告了关于DDR光学性能的观察结果,包括不对称情况,包括两个不同大小的磁盘或它们在环内的不对称位置。在对称双盘环(SDDR)纳米结构的情况下,我们证明了四极和十六极Fano共振得到抑制,这可以减少光谱测量中的串扰,而八极和三偶极双极Fano共振得到增强。利用品质因数(FOM)和对比度(CR)评估了使用研究的等离激元纳米结构作为生化传感器的潜力。使用SDDR中的三偶极双极Fano共振获得的FOM和CR值分别为17%和57%。这些结果表明,SDDR可以在可见光波长范围内发展成为高性能的生化传感器。

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