Wang Qiang, Ge Yong, Sun Hong-Xiang, Xue Haoran, Jia Ding, Guan Yi-Jun, Yuan Shou-Qi, Zhang Baile, Chong Y D
Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, Singapore.
Research Center of Fluid Machinery Engineering and Technology, School of Physics and Electronic Engineering, Jiangsu University, Zhenjiang, China.
Nat Commun. 2021 Jun 16;12(1):3654. doi: 10.1038/s41467-021-23963-7.
Crystalline materials can host topological lattice defects that are robust against local deformations, and such defects can interact in interesting ways with the topological features of the underlying band structure. We design and implement a three dimensional acoustic Weyl metamaterial hosting robust modes bound to a one-dimensional topological lattice defect. The modes are related to topological features of the bulk bands, and carry nonzero orbital angular momentum locked to the direction of propagation. They span a range of axial wavenumbers defined by the projections of two bulk Weyl points to a one-dimensional subspace, in a manner analogous to the formation of Fermi arc surface states. We use acoustic experiments to probe their dispersion relation, orbital angular momentum locked waveguiding, and ability to emit acoustic vortices into free space. These results point to new possibilities for creating and exploiting topological modes in three-dimensional structures through the interplay between band topology in momentum space and topological lattice defects in real space.
晶体材料可以容纳对局部变形具有鲁棒性的拓扑晶格缺陷,并且这些缺陷能够以有趣的方式与底层能带结构的拓扑特征相互作用。我们设计并实现了一种三维声学外尔超材料,其拥有与一维拓扑晶格缺陷相关的鲁棒模式。这些模式与体带的拓扑特征相关,并携带锁定在传播方向上的非零轨道角动量。它们跨越了由两个体外尔点投影到一维子空间所定义的一系列轴向波数,其方式类似于费米弧表面态的形成。我们利用声学实验来探测它们的色散关系、轨道角动量锁定的波导以及向自由空间发射声学涡旋的能力。这些结果指出了通过动量空间中的能带拓扑与实空间中的拓扑晶格缺陷之间的相互作用,在三维结构中创建和利用拓扑模式的新可能性。