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Tailoring Enhanced Optical Chirality: Design Principles for Chiral Plasmonic Nanostructures

机译:定制增强的光学手性:手性等离子体纳米结构的设计原理

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Electromagnetic fields with strong optical chirality can be formed in the near field of chiral plasmonic nanostructures. We calculate and visualize the degree of chirality to identify regions with relatively high values. This analysis leads to design principles for a simple utilization of chiral fields. We investigate planar geometries, which offer a convenient way to access the designated fields, as well as three-dimensional nanostructures, which show a very high local optical chirality.
机译:可以在手性等离子体纳米结构的近场中形成具有强光学手性的电磁场。我们计算并可视化手性程度,以识别具有较高值的​​区域。该分析得出了简单利用手性场的设计原理。我们研究了平面几何形状,这提供了访问指定字段的便捷方法,以及三维纳米结构,其显示了很高的局部光学手性。

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