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Multidimensional Hybridization of Dark Surface Plasmons

机译:深色表面等离子体的多维杂交

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Synthetic three-dimensional (3D) nanoarchitectures are providing more control over light matter interactions and rapidly progressing photonic-based technology. These applications often utilize the strong synergy between electromagnetic fields and surface plasmons (SPs) in metallic. nanostructures. However, many of the SP interactions hosted by complex 3D nanostructures are poorly understood because they involve dark hybridized states that are typically undetectable with far-field optical spectroscopy. Here, we use experimental and theoretical electron energy loss spectroscopy to elucidate dark SPs and their interactions in layered metal-insulator-metal disc nanostructures. We go beyond the established dipole SP hybridization analysis by, measuring breathing and multipolar SP hybridization. In addition, we reveal multidimensional SP hybridization that simultaneously utilizes in-plane and out-of-plane SP coupling. Near-field classic electrodynamics calculations provide excellent agreement with all experiments. These results advance the fundamental understanding of SP hybridization in 3D nanostructures and provide avenues to further tune the interaction between electromagnetic fields and matter.
机译:合成三维(3D)纳米建筑提供更多控制光源相互作用,并迅速进展基于光子的技术。这些应用通常利用金属电磁场和表面等离子体(SPS)之间的强大协同作用。纳米结构。然而,复杂3D纳米结构托管的许多SP相互作用仍然理解,因为它们涉及与远场光谱的无检测到的黑暗杂交状态。在这里,我们使用实验和理论电子能量损失光谱法来阐明深色SPS及其在层状金属 - 绝缘体 - 金属 - 金属盘纳米结构中的相互作用。我们超越了已建立的偶极SP杂交分析,测量呼吸和多极体SP杂交。此外,我们揭示了多维SP杂交,同时使用平面内和平面外部SP耦合。近场经典电动动力学计算提供了与所有实验的良好协议。这些结果提高了对3D纳米结构的SP杂交的根本理解,并提供了进一步调整电磁场与物质之间相互作用的途径。

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