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Enhanced extraordinary optical transmission and refractive-index sensing sensitivity in tapered plasmonic nanohole arrays

机译:增强了锥形等离子体纳米隆阵列中的非凡光学传输和折射率感应灵敏度

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摘要

The phenomenon of extraordinary optical transmission (EOT) caused by light through metallic nanohole arrays has attracted significant attention due to its potential applications for monolithic color filters and ultrasensitive label-free biosensing. However, the EOT spectra of these nanohole arrays have multiple resonance peaks that are spectrally close to each other due to the multiple resonance modes generated by different media on the upper and lower surfaces of metal. In addition, owing to the absorption loss of metal and the scattering of holes, the EOT resonance peaks have low transmission coefficient for practical applications. In this work, utilizing a tapered nanohole arrays structure which is stacked by multiple cylindrical holes with the same depth but different radii, we show that tapered nanohole arrays can effectively suppress the excitation of multiple resonance peaks, and a single EOT peak emerges in the transmission spectrum and simultaneously exhibits significantly enhanced transmission (similar to 7 times) and narrow linewidth (similar to 15 nm). The enhanced EOT of tapered nanohole arrays can be also found in other wavelength regions and plasmonic materials. Benefiting from isolated transmission peak, high transmission efficiency and extremely narrow linewidth, a highly sensitive plasmonic nanosensor with sensitivity of 1580 nm/RIU and figure of merit of 105 can be attained. We believe that the tapered nanohole structure would enable applications for ultrasensitive sensors, switches and efficient filters.
机译:由金属纳米孔阵列的光引起的非凡光学传动(EOT)的现象引起了显着的关注,因为它的单片滤色器和无敏感标记的无溶质生物传感器。然而,这些纳米轴阵列的EOT光谱具有多个共振峰,其由于由金属的上表面和下表面上的不同介质产生的多个谐振模式而彼此窥探。另外,由于金属的吸收损失和孔的散射,EOT共振峰具有低透射系数的实际应用。在这项工作中,利用锥形纳米孔阵列结构,该结构由具有相同深度但不同的半径的多个圆柱孔堆叠,我们示出了锥形纳米孔阵列可以有效地抑制多个共振峰的激发,并且在变速器中出现单个EOT峰值光谱和同时表现出显着增强的变速器(类似于7次)和窄线宽(类似于15nm)。还可以在其他波长区域和等离子体材料中发现锥形纳米轴阵列的增强齿齿。从隔离传输峰值中受益,高传输效率和极窄的线宽,可以获得具有1580nm / RiU的灵敏度的高度敏感的等离子体传感器和105的优异图。我们认为锥形纳米孔结构将使超敏感传感器,开关和有效过滤器能够实现应用。

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  • 来源
    《Nanotechnology》 |2019年第33期|共9页
  • 作者单位

    Hunan Univ Coll Mech &

    Vehicle Engn State Key Lab Adv Design &

    Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

    Hunan Univ Coll Mech &

    Vehicle Engn State Key Lab Adv Design &

    Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

    Hunan Univ Coll Mech &

    Vehicle Engn State Key Lab Adv Design &

    Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

    Hunan Univ Coll Mech &

    Vehicle Engn State Key Lab Adv Design &

    Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

    Hunan Univ Coll Mech &

    Vehicle Engn State Key Lab Adv Design &

    Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

    Hunan Univ Coll Mech &

    Vehicle Engn State Key Lab Adv Design &

    Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    extraordinary optical transmission; enhanced; tapered nanohole arrays; sensitivity; figure of merit;

    机译:非凡的光学传输;增强;锥形纳米孔阵列;敏感性;优点;

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