论文标题

拓扑声子材料目录

Catalogue of topological phonon materials

论文作者

Xu, Yuanfeng, Vergniory, M. G., Ma, Da-Shuai, Mañes, Juan L., Song, Zhi-Da, Bernevig, B. Andrei, Regnault, Nicolas, Elcoro, Luis

论文摘要

声子在固态系统的许多特性中起着至关重要的作用,例如热和电导率,中子散射以及相关效应或超导性。因此,预计拓扑声子也将导致富裕和非常规物理学,并且搜索托管拓扑声子的搜索成为该领域的优先事项。在电子晶体材料中,Bloch状态的拓扑特性的很大一部分可以通过其对等空间中的对称特征值来指示。这已经适应了拓扑材料的高通量计算,并且发现数据库上的一半以上的化学计量材料被认为是拓扑绝缘子或半金属。基于现有的声子材料数据库,在这里,我们为超过一万个三维晶体材料执行了拓扑声子带的第一个目录。使用拓扑量子化学,我们计算了声子数据库中材料的每个隔离的声子谱带的频带表示,兼容性关系和带拓扑。我们还计算了所有拓扑琐碎带的真实空间不变性,并将其归类为原子和阻塞的原子带。特别是,在所有材料的不同裂解平面上计算表面声子模式(分散)。值得注意的是,我们选择了超过一千个“理想”的非平凡的声子材料来吸引未来的实验研究。高通量计算中获得的所有数据集用于构建拓扑声子数据库。

Phonons play a crucial role in many properties of solid state systems, such as thermal and electrical conductivity, neutron scattering and associated effects or superconductivity. Hence, it is expected that topological phonons will also lead to rich and unconventional physics and the search of materials hosting topological phonons becomes a priority in the field. In electronic crystalline materials, a large part of the topological properties of Bloch states can be indicated by their symmetry eigenvalues in reciprocal space. This has been adapted to the high-throughput calculations of topological materials, and more than half of the stoichiometric materials on the databases are found to be topological insulators or semi-metals. Based on the existing phonon materials databases, here we have performed the first catalogue of topological phonon bands for more than ten thousand three-dimensional crystalline materials. Using topological quantum chemistry, we calculate the band representations, compatibility relations, and band topologies of each isolated set of phonon bands for the materials in the phonon databases. We have also calculated the real space invariants for all the topologically trivial bands and classified them as atomic and obstructed atomic bands. In particular, surface phonon modes (dispersion) are calculated on different cleavage planes for all the materials. Remarkably, we select more than one thousand "ideal" non-trivial phonon materials to fascinate the future experimental studies. All the data-sets obtained in the the high-throughput calculations are used to build a Topological Phonon Database.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源