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反射金层上金/二氧化硅三角形阵列的光学性质与传感性能

Optical Properties and Sensing Performance of Au/SiO Triangles Arrays on Reflection Au Layer.

作者信息

Liu Xianchao, Wang Jun, Gou Jun, Ji Chunhui, Cui Guanhao

机构信息

School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, 610054, People's Republic of China.

出版信息

Nanoscale Res Lett. 2018 Oct 24;13(1):335. doi: 10.1186/s11671-018-2755-3.

Abstract

In order to enhance the refractive index sensing performance of simple particle arrays, a structure, consisting of Au/SiO triangle arrays layers and reflection Au substrate, with increasing size and lengthening tips of triangles, is studied. The triangle arrays are modeled after an experimentally realizable "imprint" of microsphere lithography. Numerical calculation was carried out to study its optical properties and spectral sensitivity. The calculation results show that a large local enhancement of electric field (61 times) and simultaneously high absorption is due to combination of the resonance absorption of Au triangle disks, plasmonic couplings between the Au triangle disks and the Au film, and the high-density packing of triangle disks. The absorption peaks were not detuned when the gap between neighboring tips of the triangles varied from 10 to 50 nm. When the thickness of SiO layer increased from 10 to 50 nm, the absorption peak shifted to longer wavelengths and the amplitude rises quickly signaling the dominance of the gap mode resonance between the two Au layers. As the thickness of the top Au layer varies from 10 to 50 nm, the absorption peak is also red shifted and the peak amplitude increases. The full width at half maximum of the peaks for high absorption (> 90%) is about 5 nm. When fixing the gap, the thicknesses of Au/SiO triangle layer, and increasing the surrounding refractive index from 1.33 to 1.36, the absorption peaks shifted quickly, with a refractive index sensitivity and figure of merit as high as 660 nm per refractive index unit and 132, respectively. Such arrays can be easily fabricated by using microsphere array as projection masks and find application in refractive index monitoring of liquid and identification of gas and liquid phases.

摘要

为了提高简单粒子阵列的折射率传感性能,研究了一种由金/二氧化硅三角形阵列层和反射金基底组成的结构,该结构中三角形的尺寸不断增大且尖端变长。三角形阵列是仿照微球光刻实验中可实现的“印记”建模的。进行了数值计算以研究其光学性质和光谱灵敏度。计算结果表明,由于金三角形盘的共振吸收、金三角形盘与金膜之间的等离子体耦合以及三角形盘的高密度堆积,电场出现了大幅局部增强(61倍),同时吸收也很高。当三角形相邻尖端之间的间隙从10纳米变化到50纳米时,吸收峰没有失谐。当二氧化硅层的厚度从10纳米增加到50纳米时,吸收峰向更长波长移动,且幅度迅速上升,这表明两层金之间的间隙模式共振起主导作用。当顶部金层的厚度从10纳米变化到50纳米时,吸收峰也发生红移,且峰幅度增加。高吸收(>90%)时峰的半高宽约为5纳米。当固定间隙、金/二氧化硅三角形层的厚度,并将周围折射率从1.33增加到1.36时,吸收峰迅速移动,折射率灵敏度和品质因数分别高达每折射率单位660纳米和132。通过使用微球阵列作为投影掩模可以轻松制造这种阵列,并且该阵列可用于液体的折射率监测以及气体和液相的识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f26f/6200832/cc51e484c750/11671_2018_2755_Fig1_HTML.jpg

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