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Exact Multipolar Decompositions with Applications in Nanophotonics

机译:在纳米光源中的应用,确切的多极体分解

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The multipolar decomposition of electromagnetic sources is an important tool for the study of light-matter interactions in general, and optical materials in particular. Here, a report is given on recent progress in the multipolar decomposition of electromagnetic sources. First, the exact and simple expressions for the multipolar moments of electric current density distributions are reviewed, and then, the results are extended to multipolar moments of magnetization current density distributions due to intrinsic spin. The consideration of both electric and magnetic sources allows to establish the conditions for sources of pure handedness. Scripts are provided that facilitate the computation of multipolar moments of arbitrary order. The work and the included examples of use are placed in the context of nanophotonics and metamaterials, and an outlook for applications in these and other fields is provided.
机译:电磁源的多极分解是一般的光物质相互作用的重要工具,特别是光学材料。在这里,给出了关于电磁源的多极分解的最近进展的报告。首先,回顾电流密度分布的多极矩的精确和简单的表达,然后,由于内在旋转,结果延伸到磁化电流密度分布的多极力矩。考虑两种电源和磁力源允许建立纯手段来源的条件。提供了脚本,便于计算任意顺序的多极矩。在纳米光线和超材料的背景下,使用的工作和包括的实例,并提供了这些和其他领域的应用前景。

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