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Near and Far-Field Properties of Nanoprisms with Rounded Edges

机译:圆角纳米棱镜的近场和远场特性

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摘要

Photonic devices can be developed, and their working principle can be understood only by considering the phenomena taking place at the nanoscale level. Optical properties of plasmonic structures depend on their geometric parameters and are sensitive to them. Recently, many advanced methods for the preparation of nanostructures have been proposed; however still, the geometric parameters are inaccurate. Numerical simulations provide a powerful tool for the analysis of plasmonic nanostructures. To the best of our knowledge, there are not many papers on near-field and far-field properties of single nanoprism and nanoprism dimer, the so-called bowtie, with rounded edges. For this purpose, Finite Integration Technique implemented to the CST Microwave Studio was used. Besides the edge rounding, an additional modification of the resonance modes was investigated, achieved by placement of a spherical nanoparticle in the gap between the prisms. Results of numerical simulations indicate that the radius of the curvature edges strongly affects the plasmon peak localization, and this effect cannot be neglected in plasmonic device design. Increase in the radius of edge curvature causes main extinction cross-section peak blueshift in all cases analyzed. Moreover, our calculations imply that the nanoparticle in the gap between prisms strongly influences the dependence of spectral properties on the radius curvature.
机译:可以开发光子器件,并且仅通过考虑在纳米级发生的现象才能理解其工作原理。等离激元结构的光学性质取决于其几何参数,并且对它们敏感。最近,已经提出了许多先进的制备纳米结构的方法。但是,几何参数仍然不准确。数值模拟为分析等离子体纳米结构提供了强大的工具。据我们所知,关于单纳米棱镜和纳米棱镜二聚体(所谓的领结,具有圆角边缘)的近场和远场特性的论文很少。为此,使用了在CST Microwave Studio中实施的有限集成技术。除了倒圆角外,还研究了共振模式的其他修改,方法是将球形纳米粒子放置在棱镜之间的间隙中。数值模拟结果表明,曲率边缘的半径强烈影响等离激元峰的定位,这种影响在等离激元器件设计中不能忽略。在所有分析的情况下,边缘曲率半径的增加都会导致主消光截面的峰值蓝移。此外,我们的计算表明,棱镜之间间隙中的纳米粒子会强烈影响光谱特性对半径曲率的依赖性。

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