论文标题

几何依赖性皮肤效应在相互光子晶体中

Geometry-dependent skin effects in reciprocal photonic crystals

论文作者

Fang, Zhening, Hu, Mengying, Zhou, Lei, Ding, Kun

论文摘要

频率范围内的所有本征元素成为边缘状态的皮肤效应均取决于非富米系统中独特的复杂特征值的拓扑特性。实现这种引人入胜的效果的主要尝试仅限于表现出不对称耦合的一维或非偏置系统。在这里,受到最近模型的哈密顿理论的启发,我们提出了一种现实的互惠二维光子晶体(PHC)系统,该系统显示了所需的皮肤效应。具体而言,我们通过揭示订单-2例外点(EPS)的非平凡特征值拓扑与皮肤效应之间的固有连接来建立一个常规来设计此类非热系统。在拟议的策略的指导下,我们成功设计了一个具有非零特征值绕组数的EPS的2D PHC。然后,通过利用宏观几何和晶胞的对称性来形成沿特定波形方向的光谱区域。进行了投影的频带结构计算,以证明所需的皮肤效应存在于特定的晶体界面。我们最终使用时域模拟生动地说明了这种现象,这是通过在有限大小的PHC的中心激发脉搏的。我们的结果构成了进一步的实验确认和皮肤效应应用的坚实基础。

Skin effect that all eigenmodes within a frequency range become edge states is dictated by the topological properties of complex eigenvalues unique in non-Hermitian systems. The prevailing attempts to realize such a fascinating effect are confined to either one-dimensional or nonreciprocal systems exhibiting asymmetric couplings. Here, inspired by a recent model Hamiltonian theory, we propose a realistic reciprocal two-dimensional (2D) photonic crystal (PhC) system that shows the desired skin effect. Specifically, we establish a routine for designing such non-Hermitian systems via revealing the inherent connections between the non-trivial eigenvalue topology of order-2 exceptional points (EPs) and the skin effects. Guided by the proposed strategy, we successfully design a 2D PhC that possesses the EPs with nonzero eigenvalue winding numbers. The spectral area along a specific wavevector direction is then formed by leveraging the symmetry of the macroscopic geometry and the unit cell. The projected-band-structure calculations are performed to demonstrate that the desired skin effect exists at the specific crystalline interfaces. We finally employ time-domain simulations to vividly illustrate this phenomenon by exciting a pulse at the center of a finite-sized PhC. Our results form a solid basis for further experimental confirmations and applications of the skin effect.

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