Yao Dan, Ye Liping, Fu Zhonghao, Wang Qing, He Hailong, Lu Jiuyang, Deng Weiyin, Huang Xueqin, Ke Manzhu, Liu Zhengyou
Key Laboratory of Artificial Micro- and Nanostructures of Ministry of Education and School of Physics and Technology, <a href="https://ror.org/033vjfk17">Wuhan University</a>, Wuhan 430072, China.
School of Physics and Optoelectronics, <a href="https://ror.org/0530pts50">South China University of Technology</a>, Guangzhou, 510640, China.
Phys Rev Lett. 2024 Jun 28;132(26):266602. doi: 10.1103/PhysRevLett.132.266602.
Twisted moiré materials, a new class of layered structures with different twist angles for neighboring layers, are attracting great attention because of the rich intriguing physical phenomena associated with them. Of particular interest are the topological network modes, first proposed in the small angle twisted bilayer graphene under interlayer bias. Here we report the observations of such topological network modes in twisted moiré phononic crystals without requiring the external bias fields. Acoustic topological network modes that can be constructed in a wide range of twist angles are both observed in the domain walls with and without reconstructions, which serve as the analogy of the lattice relaxations in electronic moiré materials. Topological robustness of the topological network modes is observed by introducing valley-preserved defects to the network channel. Furthermore, the network can be reconfigured into two-dimensional patterns with any desired connectivity, offering a unique prototype platform for acoustic applications.
扭曲莫尔材料是一类新型的层状结构,相邻层具有不同的扭曲角度,由于与之相关的丰富有趣的物理现象而备受关注。特别令人感兴趣的是拓扑网络模式,最初是在层间偏压下的小角度扭曲双层石墨烯中提出的。在此,我们报告了在不需要外部偏压场的扭曲莫尔声子晶体中对这种拓扑网络模式的观测结果。在有和没有重构的畴壁中都观察到了可以在很宽的扭曲角度范围内构建的声学拓扑网络模式,这类似于电子莫尔材料中的晶格弛豫。通过向网络通道引入保持谷值的缺陷,观察到了拓扑网络模式的拓扑鲁棒性。此外,该网络可以重新配置为具有任何所需连通性的二维图案,为声学应用提供了一个独特的原型平台。