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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Numerical method for analyzing the near-field enhancement of nonspherical dielectric-core metallic-shell particles accounting for the nonlocal dispersion
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Numerical method for analyzing the near-field enhancement of nonspherical dielectric-core metallic-shell particles accounting for the nonlocal dispersion

机译:用于分析非球介质金属金属 - 壳颗粒核算非局部分散的近场增强的数值方法

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Over the last few decades, dielectric core and metallic plasmonic shell (Die@Me) nanoparticles have found a wide variety of applications. The trend to reduce the thickness of the metallic coating requires to account for the influence of the nonlocal dispersion on the spectral response of such nanoparticles. In this paper, we use the discrete sources method and the generalized nonlocal optical response model to describe the nonlocality within the plasmonic metal shell. We found that the variation of the plasmonic shell thickness and the elongation of the non-spherical core-shell particle can enlarge the near-field enhancement and the absorption cross section by an order of magnitude. Besides, we show that the nonlocal dispersion can decrease the field enhancement in the wavelength domain up to 2.5 times with a small blue-shift of about 5 nm. (C) 2020 Optical Society of America
机译:在过去的几十年中,介电芯和金属等离子体壳(Die @ Me)纳米颗粒已发现各种各样的应用。 降低金属涂层厚度的趋势需要考虑非局部分散对这种纳米颗粒的光谱响应的影响。 在本文中,我们使用离散源法和广义非局部光学响应模型来描述等离子体金属壳内的非植物。 我们发现,等离子体壳厚度和非球形芯壳颗粒的伸长的变化可以通过幅度扩大近场增强和吸收横截面。 此外,我们表明非局部分散体可以降低波长域中的现场增强高达2.5倍,其小的蓝色偏移为约5nm。 (c)2020美国光学学会

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