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Three-arm windmill plasmonic nanoantenna: polarization and symmetry-dependent optical characteristics

机译:三臂风车等离子体纳米纳米纳米:偏振和对称依赖性光学特性

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A robust windmill plasmonic nanoantenna is proposed by constructing of three gold ellipsoidal arms separated with a round nanogap. By using the Finite Element Method (FEM), the extinction spectra and the electric field distributions of the three-arm windmill plasmonic nanoantenna are numerically investigated in detail for understanding the polarization and symmetry-dependent optical characteristics of plasmonic nanoantenna. The simulation results show that the extinction characteristics of the windmill plasmonic nanoantenna are insensitive to the polarization of incident light, while their significantly enhanced local electric field can be efficiently excited and confined within the feed gap of windmill plasmonic nanoantenna by irradiating of light with an arbitrary polarized direction. Moreover, it is found that, multipole resonance is achieved by changing of the structure symmetry of three-arm windmill plasmonic nanoantenna. It is a beneficial reference for developing of the plasmonic nanoantenna with unique polarization characteristics in practical photonic applications.
机译:通过用圆形纳米剧术分离的三个金椭圆形臂来提出一种强大的风车等离子体纳米纳米纳米。通过使用有限元方法(FEM),对三臂风车等离子体纳米纳米南纳的消光谱和电场分布进行了详细研究,以了解等离子体纳米南纳的偏振和对称依赖性光学特性。仿真结果表明,风车等离子体纳米天线的消光特性对入射光的极化不敏感,而其显着增强的局部电场可以通过用任意照射光线的光线纳米纳米纳纳的饲料间隙内容兴奋和局限于偏振方向。此外,发现,通过改变三臂风车等离子体纳米天线的结构对称来实现多极谐振。在实际光子应用中,具有独特偏振特性的偏振纳米纳尼纳的显影是一种有益的参考。

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