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首页> 外文期刊>ACS nano >Extraordinary Light-Induced Local Angular Momentum near Metallic Nanoparticles
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Extraordinary Light-Induced Local Angular Momentum near Metallic Nanoparticles

机译:金属纳米粒子附近的非常规光诱导局部角动量

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摘要

The intense local field induced near metallic nanostructures provides strong enhancements for surface enhanced spectroscopies, a major focus of plasmonics research over the past decade. Here we consider that plasmonic nanoparticles can also induce remarkably large electromagnetic field gradients near their surfaces. Sizeable field gradients can excite dipole-forbidden transitions in nearby atoms or molecules and provide unique spectroscopic finger-printing for chemical and bimolecular sensing. Specifically, we investigate how the local field gradients near metallic nanostructures depend on geometry, polarization, and wavelength. We introduce the concept of the local angular momentum (LAM) vector as a useful figure of merit for the design of nanostructures that provide large field gradients. This quantity, based on integrated fields rather than field gradients, is particularly well-suited for optimization using numerical grid-based full wave electromagnetic simulations. The LAM vector has a more compact structure than the gradient matrix and can be straightforwardly associated with the angular momentum of the electromagnetic field incident on the plasmonic structures.
机译:强烈的局部场感应在金属纳米结构附近为表面增强的光谱学提供了有力的增强,这是过去十年等离子体技术研究的主要重点。在这里,我们认为等离激元纳米粒子还可以在其表面附近感应出很大的电磁场梯度。相当大的场梯度可以激发附近原子或分子中偶极禁态的跃迁,并为化学和双分子传感提供独特的光谱指纹。具体来说,我们研究金属纳米结构附近的局部场梯度如何取决于几何形状,偏振和波长。我们介绍了局部角动量(LAM)向量的概念,作为设计提供大场梯度的纳米结构的有用品质因数。该数量基于积分场而不是场梯度,特别适合使用基于数字网格的全波电磁仿真进行优化。 LAM向量具有比梯度矩阵更紧凑的结构,并且可以直接与入射在等离子体结构上的电磁场的角动量关联。

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