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首页> 外文期刊>Journal of Modern Optics >Numerical study on optical properties of Ag/SiO 2SiO 2/Ag sandwich nanocrescents substrate
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Numerical study on optical properties of Ag/SiO 2SiO 2/Ag sandwich nanocrescents substrate

机译:Ag / SiO 2SiO 2 / Ag夹心纳米月牙基底光学特性的数值研究

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摘要

A novel structure of a metal/dielectric/metal (Ag/SiO_2SiO_2/Ag) sandwich nanocrescent has been proposed and studied. We make a detailed numerical analysis on the extinction efficiency and LSPR property of the sandwich nanocrescent by using the finite difference time domain (FDTD) method. It clearly demonstrates that a comparable field enhancement can be achieved by varying the thickness of the SiO_2SiO_2 layer at different incident polarizations. Excited in the Y-polarization, the maximum electric field enhancement factor reaches 600 at the peak wavelength 1108.9nm, which is six times higher than previous reported single layer nanocrescent. The refractive index sensitivity of this new sandwich nanocrescent is 375.5nm/RIU (refractive index unit). The structure is shown to produce a high local field enhancement as well as wide plasmon resonance tunabilities. Besides, compared with adjusting the shape and size of the single layer nanocrescent structure, it is much more convenient and easier to change the thickness of the sandwich nanocrescent. Due to its excellent properties, this structure is very suitable for LSPR and SERS nanosensing substrate.
机译:提出并研究了一种新型的金属/介电/金属(Ag / SiO_2SiO_2 / Ag)夹心纳米月牙结构。我们使用时域有限差分法(FDTD)对三明治纳米新月形的消光效率和LSPR特性进行了详细的数值分析。清楚地表明,通过改变不同入射偏振下的SiO_2SiO_2层的厚度,可以实现可比的场增强。在Y极化的激发下,最大电场增强因子在峰值波长1108.9nm处达到600,这是以前报道的单层纳米新月形的六倍。这种新型三明治纳米新月形的折射率灵敏度为375.5nm / RIU(折射率单位)。该结构显示出产生高的局部场增强以及宽的等离子体激元共振可调性。此外,与调整单层纳米新月形结构的形状和尺寸相比,改变夹层纳米新月形的厚度要方便得多。由于其优异的性能,这种结构非常适合LSPR和SERS纳米传感基板。

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