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标量和并矢非局部光学响应模型的分类

Classification of scalar and dyadic nonlocal optical response models.

作者信息

Wubs M

出版信息

Opt Express. 2015 Nov 30;23(24):31296-312. doi: 10.1364/OE.23.031296.

Abstract

Nonlocal optical response is one of the emerging effects on the nanoscale for particles made of metals or doped semiconductors. Here we classify and compare both scalar and tensorial nonlocal response models. In the latter case the nonlocality can stem from either the longitudinal response, the transverse response, or both. In phenomenological scalar models the nonlocal response is described as a smearing out of the commonly assumed infinitely localized response, as characterized by a distribution with a finite width. Here we calculate explicitly whether and how tensorial models, such as the hydrodynamic Drude model and generalized nonlocal optical response theory, follow this phenomenological description. We find considerable differences, for example that nonlocal response functions, in contrast to simple distributions, assume negative and complex values. Moreover, nonlocal response regularizes some but not all diverging optical near fields. We identify the scalar model that comes closest to the hydrodynamic model. Interestingly, for the hydrodynamic Drude model we find that actually only one third (1/3) of the free-electron response is smeared out nonlocally. In that sense, nonlocal response is stronger for transverse and scalar nonlocal response models, where the smeared-out fractions are 2/3 and 3/3, respectively. The latter two models seem to predict novel plasmonic resonances also below the plasma frequency, in contrast to the hydrodynamic model that predicts standing pressure waves only above the plasma frequency.

摘要

非局域光学响应是金属或掺杂半导体构成的纳米粒子在纳米尺度上出现的新效应之一。在此,我们对标量和张量非局域响应模型进行分类和比较。在后一种情况下,非局域性可能源于纵向响应、横向响应或两者皆有。在唯象标量模型中,非局域响应被描述为对通常假设的无限局域响应的一种展宽,其特征是具有有限宽度的分布。在此,我们明确计算张量模型,如流体动力学德鲁德模型和广义非局域光学响应理论,是否以及如何遵循这种唯象描述。我们发现了显著差异,例如,与简单分布不同,非局域响应函数会取负值和复数值。此外,非局域响应使一些但不是所有发散的光学近场正则化。我们确定了最接近流体动力学模型的标量模型。有趣的是,对于流体动力学德鲁德模型,我们发现实际上只有三分之一(1/3)的自由电子响应以非局域方式被展宽。从这个意义上说,横向和标量非局域响应模型的非局域响应更强,其中展宽分数分别为2/3和3/3。与仅预测等离子体频率以上的驻压力波的流体动力学模型相比,后两种模型似乎还预测了等离子体频率以下的新型等离子体共振。

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