Wiecha Matthias M, Al-Daffaie Shihab, Bogdanov Andrey, Thomson Mark D, Yilmazoglu Oktay, Küppers Franko, Soltani Amin, Roskos Hartmut G
Physikalisches Institut, Goethe-Universität, Max-von-Laue Straße 1, D-60438 Frankfurt am Main, Germany.
Institut für Mikrowellentechnik und Photonik, TU Darmstadt, Merckstraße 25, D-64283 Darmstadt, Germany.
ACS Omega. 2019 Dec 13;4(26):21962-21966. doi: 10.1021/acsomega.9b03036. eCollection 2019 Dec 24.
Surface plasmon polaritons on (silver) nanowires are promising components for future photonic technologies. Here, we study near-field patterns on silver nanowires with a scattering-type scanning near-field optical microscope that enables the direct mapping of surface waves. We analyze the spatial pattern of the plasmon signatures for different excitation geometries and polarization and observe a plasmon wave pattern that is canted relative to the nanowire axis, which we show is due to a superposition of two different plasmon modes, as supported by electromagnetic simulations including the influence of the substrate. These findings yield new insights into the excitation and propagation of plasmon polaritons for applications in nanoplasmonic devices.
(银)纳米线上的表面等离激元极化激元是未来光子技术中很有前景的组件。在此,我们使用散射型扫描近场光学显微镜研究银纳米线上的近场图案,该显微镜能够直接绘制表面波。我们分析了不同激发几何结构和偏振下等离激元特征的空间图案,并观察到相对于纳米线轴倾斜的等离激元波图案,我们表明这是由于两种不同等离激元模式的叠加所致,包括基底影响的电磁模拟也支持这一点。这些发现为纳米等离激元器件应用中等离激元极化激元的激发和传播提供了新的见解。