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连续层间隙表面等离子体激元谐振器。

Continuous layer gap plasmon resonators.

作者信息

Nielsen Michael G, Gramotnev Dmitri K, Pors Anders, Albrektsen Ole, Bozhevolnyi Sergey I

机构信息

Institute of Technology and Innovation (ITI), University of Southern Denmark, Niels Bohrs Allé 1, DK-5230 Odense M, Denmark.

出版信息

Opt Express. 2011 Sep 26;19(20):19310-22. doi: 10.1364/OE.19.019310.

Abstract

We demonstrate both theoretically and experimentally that a gold nanostrip supported by a thin dielectric (silicon dioxide) film and a gold underlay forms an efficient (Fabry-Perot) resonator for gap surface plasmons. Periodic nanostrip arrays are shown to exhibit strong and narrow resonances with nearly complete absorption and quality factors of ~15-20 in the near-infrared. Two-photon luminescence microscopy measurements reveal intensity enhancement factors of ~120 in the 400-nm-period array of 85-nm-wide gold strips atop a 23-nm-thick silica film at the resonance wavelength of ~770 nm. Excellent resonant characteristics, the simplicity of tuning the resonance wavelength by adjusting the nanostrip width and/or the dielectric film thickness and the ease of fabrication with (only) one lithography step required make the considered plasmonic configuration very attractive for a wide variety of applications, ranging from surface sensing to photovoltaics.

摘要

我们通过理论和实验证明,由薄介电(二氧化硅)膜和金底层支撑的金纳米条形成了用于间隙表面等离子体激元的高效(法布里 - 珀罗)谐振器。周期性纳米条阵列在近红外区域表现出强烈且狭窄的共振,具有近乎完全的吸收以及约15 - 20的品质因数。双光子发光显微镜测量表明,在约770 nm的共振波长下,位于23 nm厚二氧化硅膜顶部的85 nm宽金条的400 nm周期阵列的强度增强因子约为120。出色的共振特性、通过调整纳米条宽度和/或介电膜厚度来调谐共振波长的简单性以及(仅)通过一步光刻即可轻松制造,使得所考虑的等离子体结构对于从表面传感到光伏等各种应用非常有吸引力。

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