Departamento de Física, Universidade Federal do Rio Grande do Norte, Natal, RN, 59078-970, Brazil.
Instituto Federal do Ceará, Cedro, CE, 63400-000, Brazil.
Sci Rep. 2023 Jan 16;13(1):850. doi: 10.1038/s41598-023-27868-x.
In recent years the research about topological photonic structures has been a very attractive topic in nanoscience from both a basic science and a technological point of view. In this work we propose a two-dimensional topological photonic structure, composed of a trivial and a topological photonic crystals, made of dumbbell-shaped dielectric rods. The topological behavior is induced by introducing an angular perturbation in the dumbbell-shaped dielectric rods. We show that this composed structure supports pseudospin interface states at the interface between the trivial and topological crystals. Our numerical results show that a bandgap is opened in the band structure by introducing the angular perturbation in the system, lifting the double degeneracy of the double Dirac cone at the [Formula: see text] point of the Brillouin zone, despite keeping the [Formula: see text] symmetry group. A pseudospin topological behavior was observed and analyzed with emphasis on the photonic bands at the [Formula: see text] point. We have also investigated the robustness of these pseudospin interface states and, according with our numerical results, we conclude that they are robust against defects, disorder and reflection. Finally, we have shown that the two edge modes present energy flux propagating in opposite directions, which is the photonic analogue of the quantum spin Hall effect.
近年来,从基础科学和技术角度来看,拓扑光子结构的研究一直是纳米科学中一个非常吸引人的课题。在这项工作中,我们提出了一种由平凡和拓扑光子晶体组成的二维拓扑光子结构,由哑铃形介电棒构成。拓扑行为是通过在哑铃形介电棒中引入角扰动诱导的。我们表明,这种组合结构在平凡晶体和拓扑晶体之间的界面处支持赝自旋界面态。我们的数值结果表明,通过在系统中引入角扰动,在能带结构中打开了一个能隙,尽管保持了[Formula: see text]对称群,但解除了布里渊区[Formula: see text]点双狄拉克锥的双重简并。观察并分析了赝自旋拓扑行为,重点是[Formula: see text]点的光子能带。我们还研究了这些赝自旋界面态的鲁棒性,根据我们的数值结果,我们得出结论,它们对缺陷、无序和反射是鲁棒的。最后,我们表明,两个边缘模式表现出沿相反方向传播的能量通量,这是量子自旋霍尔效应的光子类比。