Devescovi Chiara, García-Díez Mikel, Robredo Iñigo, Blanco de Paz María, Lasa-Alonso Jon, Bradlyn Barry, Mañes Juan L, G Vergniory Maia, García-Etxarri Aitzol
Donostia International Physics Center, Paseo Manuel de Lardizabal 4, 20018, Donostia-San Sebastián, Spain.
Physics Department, University of the Basque Country (UPV-EHU), Bilbao, Spain.
Nat Commun. 2021 Dec 17;12(1):7330. doi: 10.1038/s41467-021-27168-w.
Time Reversal Symmetry (TRS) broken topological phases provide gapless surface states protected by topology, regardless of additional internal symmetries, spin or valley degrees of freedom. Despite the numerous demonstrations of 2D topological phases, few examples of 3D topological systems with TRS breaking exist. In this article, we devise a general strategy to design 3D Chern insulating (3D CI) cubic photonic crystals in a weakly TRS broken environment with orientable and arbitrarily large Chern vectors. The designs display topologically protected chiral and unidirectional surface states with disjoint equifrequency loops. The resulting crystals present the following characteristics: First, by increasing the Chern number, multiple surface states channels can be supported. Second, the Chern vector can be oriented along any direction simply changing the magnetization axis, opening up larger 3D CI/3D CI interfacing possibilities as compared to 2D. Third, by lowering the TRS breaking requirements, the system is ideal for realistic photonic applications where the magnetic response is weak.
时间反演对称性(TRS)破缺的拓扑相提供了由拓扑保护的无隙表面态,而与额外的内禀对称性、自旋或能谷自由度无关。尽管二维拓扑相已有众多实例,但具有TRS破缺的三维拓扑系统的例子却很少。在本文中,我们设计了一种通用策略,用于在具有可定向且任意大陈数矢量的弱TRS破缺环境中设计三维陈绝缘(3D CI)立方光子晶体。这些设计展示了具有不相交等频线的拓扑保护手性和单向表面态。所得晶体具有以下特性:第一,通过增加陈数,可以支持多个表面态通道。第二,只需改变磁化轴,陈数矢量就可以沿任何方向定向,与二维情况相比,这为三维CI/三维CI界面提供了更多可能性。第三,通过降低TRS破缺要求,该系统对于磁响应较弱的实际光子应用来说是理想的。