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利用等离子体耦合增强一维灵敏度。

Enhancing one dimensional sensitivity with plasmonic coupling.

作者信息

O'Mullane Samuel, Peterson Brennan, Race Joseph, Keller Nick, Diebold Alain C

出版信息

Opt Express. 2014 Oct 20;22(21):26246-53. doi: 10.1364/OE.22.026246.

Abstract

In this paper, we propose a cross-grating structure to enhance the critical dimension sensitivity of one dimensional nanometer scale metal gratings. Making use of the interaction between slight changes in refractive index and localized plasmons, we demonstrate sub-angstrom scale sensitivity in this structure. Compared to unaltered infinite metal gratings and truncated finite gratings, this cross-grating structure shows robust spectra dependent mostly on the dimension of the smaller line width and pitch. While typical scatterometry simulations show angstrom resolution at best, this structure has demonstrated picometer resolution. Due to the wide range of acceptable specifications, we expect experimental confirmation of such structures to soon follow.

摘要

在本文中,我们提出了一种交叉光栅结构,以提高一维纳米尺度金属光栅的临界尺寸灵敏度。利用折射率的微小变化与局域等离子体之间的相互作用,我们在该结构中展示了亚埃尺度的灵敏度。与未改变的无限金属光栅和截断的有限光栅相比,这种交叉光栅结构显示出稳健的光谱,主要取决于较小线宽和间距的尺寸。虽然典型的散射测量模拟充其量只能显示埃级分辨率,但这种结构已展示出皮米级分辨率。由于可接受的规格范围很广,我们预计此类结构很快将得到实验证实。

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