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准确建模等离子体纳米结构的暗场散射光谱。

Accurate Modeling of Dark-Field Scattering Spectra of Plasmonic Nanostructures.

机构信息

Nanophotonic Laboratory, Department of Physics, Nanjing University of Science and Technology , Nanjing 210094, China.

Centre for Disruptive Photonic Technologies, School of Physical and Mathematical Sciences, Nanyang Technological University , 21 Nanyang Link, Singapore 637371.

出版信息

ACS Nano. 2015 Oct 27;9(10):10039-46. doi: 10.1021/acsnano.5b03622. Epub 2015 Sep 10.

Abstract

Dark-field microscopy is a widely used tool for measuring the optical resonance of plasmonic nanostructures. However, current numerical methods for simulating the dark-field scattering spectra were carried out with plane wave illumination either at normal incidence or at an oblique angle from one direction. In actual experiments, light is focused onto the sample through an annular ring within a range of glancing angles. In this paper, we present a theoretical model capable of accurately simulating the dark-field light source with an annular ring. Simulations correctly reproduce a counterintuitive blue shift in the scattering spectra from gold nanodisks with a diameter beyond 140 nm. We believe that our proposed simulation method can be potentially applied as a general tool capable of simulating the dark-field scattering spectra of plasmonic nanostructures as well as other dielectric nanostructures with sizes beyond the quasi-static limit.

摘要

暗场显微镜是一种广泛用于测量等离子体纳米结构光学共振的工具。然而,目前用于模拟暗场散射光谱的数值方法是在平面波照明下进行的,要么是在正常入射,要么是从一个方向以倾斜角入射。在实际实验中,光通过一个环形光阑聚焦在样品上,其掠射角在一定范围内。在本文中,我们提出了一个能够准确模拟具有环形光阑的暗场光源的理论模型。模拟结果正确地再现了直径超过 140nm 的金纳米盘的散射光谱的反直觉的蓝移。我们相信,我们提出的模拟方法可以作为一种通用工具,潜在地应用于模拟等离子体纳米结构以及其他尺寸超过准静态极限的介电纳米结构的暗场散射光谱。

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