论文标题

等离子波导中强杂交边缘模式的传播

Propagation of Strongly Hybridized Edge Modes in Plasmonic Waveguides

论文作者

Pshenichnyuk, I. A., Kosolobov, S. S., Maimistov, A. I., Drachev, V. P.

论文摘要

在我们的工作中,我们研究了纳米级杂交等离子波导中光模式的传播。基于频率域的基于麦克斯韦方程的模拟将实施以研究3D中混合模式的特性。我们的分析结果应用于设计具有有用特征的高级混合波导。这里演示了如何将两个边缘等离子与波导模式息息,以形成一个杂交波导,以适应电流晶体管(调节剂)领域的应用。边缘等离子体的混合极化状态使他们能够与水平极化(TE)光学模式(对于通常的表面等离子不可能),并为极化独立的等离子调节剂打开道路。

In our work we investigate the propagation of optical modes in nanoscale hybrid plasmonic waveguides. Frequency domain Maxwell equations based simulations are implemented to study properties of mixed modes in 3D. The results of our analysis are applied to design an advanced hybrid waveguide with useful characteristics. It is demonstrated here how to couple two edge plasmons with a waveguide mode to form a hybrid waveguide well tuned for applications in the field of electro-optical transistors (modulators). A mixed polarization state of edge plasmons allows them to couple with a horizontally polarized (TE) optical mode (which is not possible for usual surface plasmons) and open the way to polarization independent plasmonic modulators.

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