论文标题
从三点材料到多型节点链接
From triple-point materials to multiband nodal links
论文作者
论文摘要
我们研究了一类拓扑材料,这些拓扑材料在它们的动量空间带结构中以三重脱位为三个点。专门针对$ \ nathcal {p} \ Mathcal {t} $ - 对称的结晶固体,具有可忽略的自旋轨道耦合,我们发现这样的三点可以通过包含三个,四个或六倍旋转轴的小组稳定下来,并且我们会根据可能的三重旋转轴进行分类,并根据type a type a-type a type a-type a-afts type n of Scressival-type a type a-afts type n of type a-s.弧。此外,通过采用最近发现的非亚洲谱带拓扑,我们认为旋转对称性菌株将A型三重点转化为多型淋巴结链路。尽管以前是理论上构思的多播结节线组成,并且与拓扑单电路电荷有关,但迄今为止缺少用于操纵和检查的实用凝结的平台。通过审查具有弱自旋轨道耦合的已知三分点材料,并通过执行第一原理计算以预测新的三点材料,我们确定了适当的候选者,以实现应用菌株中多型淋巴结链路。特别是,我们报告说,研究这种现象的理想化合物是li $ _2 $ nan,其中三重点转换为多型淋巴结链接,分别促进了状态的可调密度和光学传导率,并以掺杂和应变而促进。
We study a class of topological materials which in their momentum-space band structure exhibit three-fold degeneracies known as triple points. Focusing specifically on $\mathcal{P}\mathcal{T}$-symmetric crystalline solids with negligible spin-orbit coupling, we find that such triple points can be stabilized by little groups containing a three-, four- or six-fold rotation axis, and we develop a classification of all possible triple points as type A vs. type B according to the absence vs. presence of attached nodal-line arcs. Furthermore, by employing the recently discovered non-Abelian band topology, we argue that a rotation-symmetry-breaking strain transforms type-A triple points into multiband nodal links. Although multiband nodal-line compositions were previously theoretically conceived and related to topological monopole charges, a practical condensed-matter platform for their manipulation and inspection has hitherto been missing. By reviewing the known triple-point materials with weak spin-orbit coupling, and by performing first-principles calculations to predict new ones, we identify suitable candidates for the realization of multiband nodal links in applied strain. In particular, we report that an ideal compound to study this phenomenon is Li$_2$NaN, in which the conversion of triple points to multiband nodal links facilitates largely tunable density of states and optical conductivity with doping and strain, respectively.