论文标题
拓扑等离子体上丘面的近场和远场激发
Near- and Far-Field Excitation of Topological Plasmonic Metasurfaces
论文作者
论文摘要
由于系统的结晶对称性,呼吸蜂窝状晶格具有拓扑非平凡的散装相。伪依赖的边缘状态在微不足道和非平凡区域之间的界面上出现,可用于能量的定向传播。我们使用等离子跨表面作为示例系统,我们使用半分析模型在近场和远场探测这些状态。我们给出了观察方向性的条件,并表明它是源位置取决于的。通过将圆形的磁偶极子从平面探测出来,我们首先以跨质表面引起的源发射的增强来表征沿界面的模式。然后,我们用非零轨道角动量束从远场激发。与呼吸蜂窝晶格的所有经典波系统相关的位置方向性均为正确。我们的结果表明,可以使用手性二维材料的元表面来有效地引导纳米级的光。
The breathing honeycomb lattice hosts a topologically non-trivial bulk phase due to the crystalline-symmetry of the system. Pseudospin-dependent edge states which emerge at the interface between trivial and non-trivial regions can be used for directional propagation of energy. Using the plasmonic metasurface as an example system, we probe these states in the near and far-field using a semi-analytical model. We give the conditions under which directionality is observed and show that it is source position dependent. By probing with circularly-polarized magnetic dipoles out of the plane, we first characterize modes along the interface in terms of the enhancement of source emission due to the metasurface. We then excite from the far-field with non-zero orbital angular momentum beams. The position dependent directionality holds true for all classical wave systems with a breathing honeycomb lattice. Our results show that a metasurface in combination with a chiral two-dimensional material could be used to guide light effectively on the nanoscale.