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单晶金等离子体脊纳米天线角发射的深亚波长空间特性。

Deep subwavelength spatial characterization of angular emission from single-crystal Au plasmonic ridge nanoantennas.

机构信息

Center for Nanophotonics, FOM Institute AMOLF, Science Park 104, 1098 XG, Amsterdam, The Netherlands.

出版信息

ACS Nano. 2012 Feb 28;6(2):1742-50. doi: 10.1021/nn204750d. Epub 2012 Jan 19.

Abstract

We use spatially and angle-resolved cathodoluminescence imaging spectroscopy to study, with deep subwavelength resolution, the radiation mechanism of single plasmonic ridge antennas with lengths ranging from 100 to 2000 nm. We measure the antenna's standing wave resonances up to the fifth order and measure the dispersion of the strongly confined guided plasmon mode. By directly detecting the emitted antenna radiation with a 2D CCD camera, we are able to measure the angular emission patterns associated with each individual antenna resonance. We demonstrate that the shortest ridges can be modeled as a single point-dipole emitter oriented either upward (m = 0) or in-plane (m = 1). The far-field emission pattern for longer antennas (m > 2) is well described by two interfering in-plane point dipoles at the end facets, giving rise to an angular fringe pattern, where the number of fringes increases as the antenna becomes longer. Taking advantage of the deep subwavelength excitation resolution of the cathodoluminescence technique, we are able to determine the antenna radiation pattern as a function of excitation position. By including the phase of the radiating dipoles into our simple dipole model, we completely reproduce this effect. This work demonstrates how angle-resolved cathodoluminescence spectroscopy can be used to fully determine the emission properties of subwavelength ridge antennas, which ultimately can be used for the design of more complex and efficient antenna structures.

摘要

我们使用空间和角度分辨的阴极荧光成像光谱学,以亚波长分辨率研究长度从 100nm 到 2000nm 的单个等离子体脊形天线的辐射机制。我们测量了天线的直到第五阶的驻波共振,并测量了强约束导模等离子体模式的色散。通过用二维 CCD 相机直接检测发射的天线辐射,我们能够测量与每个天线共振相关的角发射模式。我们证明最短的脊可以被建模为一个指向向上(m=0)或平面内(m=1)的单个点偶极子发射器。对于较长的天线(m>2),远场发射模式由末端面上的两个相互干扰的平面内点偶极子很好地描述,产生了一个角度条纹图案,其中条纹的数量随着天线的长度增加而增加。利用阴极荧光技术的亚波长激发分辨率的优势,我们能够确定天线的辐射模式作为激发位置的函数。通过将辐射偶极子的相位包含到我们的简单偶极子模型中,我们完全再现了这种效果。这项工作展示了如何使用角度分辨的阴极荧光光谱学来完全确定亚波长脊形天线的发射特性,这最终可以用于设计更复杂和高效的天线结构。

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