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The Generalized Analytical Expression for the Resonance Frequencies of Plasmonic Nanoresonators Composed of Folded Rectangular Geometries

机译:折叠矩形几何体构成的等离子纳米谐振器共振频率的广义解析表达式

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摘要

A robust generalized analytical expression for resonance frequencies of plasmonic nanoresonators, which consists of folded rectangular structures, is proposed based on a circuit route. The formulation is rigorously derived from the lumped circuit analogue of the plasmon resonance in a rectangular metallic nanorod. Induced by the nonhomogeneous charge distributions in the plasmonic resonators of rectangular end-caps, the electromagnetic forces drive the harmonic oscillations of free electrons in the plasmonic nanoresonators, generating intrinsically nonlinear shape-dependent LC resonance responses. Even for the plasmonic nanoresonators with much larger structure sizes than the skin depths, the significant frequency deviations due to the phase-retardation behavior can still be adequately described by the generalized expression. Moreover, for a large range of plasmonic nanoresonators with various folded rectangular geometries, sizes and materials, the generalized analytical expression gives the underlining physics and provides accurate predictions, which are perfectly verified by a series of numerical simulations. Our studies not only offer quantitative insights of nearly any plasmonic nanoresonators based on folded rectangular geometries, but also reveal potential applications to design complex plasmonic systems, such as periodic arrays with embedded rectangular nanoresonators.
机译:基于电路路径,提出了一种由折叠矩形结构组成的等离子纳米谐振器谐振频率的鲁棒广义解析表达式。该配方严格地由矩形金属纳米棒中的等离激元共振的集总电路类似物得出。由矩形端盖的等离子共振器中的非均匀电荷分布引起,电磁力驱动等离子纳米共振器中自由电子的谐波振荡,从而产生固有的非线性形状相关的LC共振响应。即使对于具有比趋肤深度大得多的结构尺寸的等离激元纳米谐振器,归因于相位延迟行为的显着频率偏差仍可以由广义表达式充分描述。此外,对于具有各种折叠矩形几何形状,尺寸和材料的各种等离子纳米谐振器,广义的解析表达式给出了下划线的物理信息并提供了准确的预测,这些预测已通过一系列数值模拟得到了完美验证。我们的研究不仅提供了基于折叠矩形几何形状的几乎所有等离子体纳米谐振器的定量见解,而且还揭示了设计复杂等离子体系统(例如具有嵌入式矩形纳米谐振器的周期阵列)的潜在应用。

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