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首页> 外文期刊>ACS nano >Localized surface plasmon resonances in spatially dispersive nano-objects: Phenomenological treatise
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Localized surface plasmon resonances in spatially dispersive nano-objects: Phenomenological treatise

机译:空间分散的纳米物体中的局部表面等离子体共振:现象学论着

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摘要

Nonlocal optical response of materials, important at the nanometric scale, influences numerous optical phenomena, such as electromagnetic field confinement and spectral characteristics of plasmonic resonances. Here, we present a general phenomenological approach to account for nonlocal material polarizabilities in nanoscale metal particles. The problem of nonlocal plasmonic resonances is formulated by an integro-differential equation in a space domain and solved by adopting its weak form, implemented in the finite element method, thus, dispensing with the requirements on additional boundary conditions. As an example, nonlocal smearing effects in plasmonic nanorods of various cross sections and nanotubes have been considered. Clear signature of nonlocality manifests itself in the interference fringes in the potential profile and a significant frequency shift of the localized surface plasmon resonances. These effects are especially important for nanoparticles with geometrical features comparable to the de Broglie wavelengths of electrons participating in the light-matter interactions. The proposed method provides a universal tool for phenomenological account of nonlocalities of any kind with the only requirement of linearity in system's response.
机译:材料的非局部光学响应(在纳米尺度上很重要)会影响许多光学现象,例如电磁场限制和等离子体共振的光谱特性。在这里,我们提出了一种一般的现象学方法来解释纳米级金属颗粒中非局部材料的极化率。非局部等离子体共振的问题由空间域中的积分-微分方程提出,并采用有限元方法中实现的弱形式来解决,从而省去了对附加边界条件的要求。例如,已经考虑了在各种横截面的等离子纳米棒和纳米管中的非局部涂抹效应。明显的非局域性特征在势能轮廓的干涉条纹和局部表面等离振子共振的明显频率偏移中表现出来。这些效应对于具有可与参与光-物质相互作用的电子的德布罗意波长相当的几何特征的纳米粒子尤为重要。所提出的方法提供了一种通用的工具,用于对任何种类的非局部现象进行现象学解释,而对系统响应的线性仅要求。

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