论文标题
磁性空间组表示之间的拓扑通讯
Topological correspondence between magnetic space group representations
论文作者
论文摘要
过去几年在拓扑材料的分类中取得了迅速的进步。在磁性结构的相关背景下,这些诊断方法越来越多地探索。我们在一组一组必要拓扑的反铁磁兼容空间组中报告一般的电子配置。有趣的是,我们发现这些抗肥大阶段与必然是非平凡的拓扑铁/铁磁性对应物之间的系统对应关系,这些对应物很容易通过出于物理动机的扰动而获得。解决发生这种机制的详尽磁空间组列表时,我们还验证了它在现有分类方案中被认为是微不足道的3D系统中的存在。这导致表达了超维拓扑的概念,其特征是系统中的一部分中的非客气性,它们与稳定的Weyl点并存远离了这些平面,从而在整个3D感觉中揭示了新颖的拓扑材料,它们在其体积和表面频谱中易于观察到。
The past years have seen rapid progress in the classification of topological materials. These diagnostical methods are increasingly getting explored in the pertinent context of magnetic structures. We report on a general class of electronic configurations within a set of anti-ferromagnetic-compatible space groups that are necessarily topological. Interestingly, we find a systematic correspondence between these anti-ferromagnetic phases to necessarily nontrivial topological ferro/ferrimagnetic counterparts that are readily obtained through physically motivated perturbations. Addressing the exhaustive list of magnetic space groups in which this mechanism occurs, we also verify its presence on planes in 3D systems that were deemed trivial in existing classification schemes. This leads to the formulation of the concept of subdimensional topologies, featuring non-triviality within part of the system that coexists with stable Weyl points away from these planes, thereby uncovering novel topological materials in the full 3D sense that have readily observable features in their bulk and surface spectrum.