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反铁电暗模式在倒格点等离子体中的成像。

Imaging of Antiferroelectric Dark Modes in an Inverted Plasmonic Lattice.

机构信息

Departament de Física de la Matèria Condensada, Universitat de Barcelona, Barcelona 08028, Spain.

Institut de Nanociència i Nanotecnologia (IN2UB), Universitat de Barcelona, Barcelona 08028, Spain.

出版信息

ACS Nano. 2023 May 9;17(9):8123-8132. doi: 10.1021/acsnano.2c11016. Epub 2023 Apr 24.

Abstract

Plasmonic lattice nanostructures are of technological interest because of their capacity to manipulate light below the diffraction limit. Here, we present a detailed study of dark and bright modes in the visible and near-infrared energy regime of an inverted plasmonic honeycomb lattice by a combination of Au focused ion beam lithography with nanometric resolution, optical and electron spectroscopy, and finite-difference time-domain simulations. The lattice consists of slits carved in a gold thin film, exhibiting hotspots and a set of bright and dark modes. We proposed that some of the dark modes detected by electron energy-loss spectroscopy are caused by antiferroelectric arrangements of the slit polarizations with two times the size of the hexagonal unit cell. The plasmonic resonances take place within the 0.5-2 eV energy range, indicating that they could be suitable for a synergistic coupling with excitons in two-dimensional transition metal dichalcogenides materials or for designing nanoscale sensing platforms based on near-field enhancement over a metallic surface.

摘要

等离子体晶格纳米结构因其能够在低于衍射极限的条件下操控光而具有技术应用价值。在这里,我们通过 Au 聚焦离子束光刻与纳米分辨率、光学和电子光谱学以及有限差分时域模拟的组合,对反蛋白石等离子体晶格在可见光和近红外能量范围内的暗模和亮模进行了详细研究。该晶格由刻在金薄膜中的狭缝组成,表现出热点和一系列亮模和暗模。我们提出,通过电子能量损失光谱检测到的一些暗模是由狭缝极化的反铁电排列引起的,其大小是六边形单元的两倍。等离子体共振发生在 0.5-2 eV 的能量范围内,这表明它们可能适合与二维过渡金属二卤化物材料中的激子协同耦合,或者用于设计基于金属表面近场增强的纳米级传感平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ad5/10173685/a506aec310dd/nn2c11016_0001.jpg

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