Xu Heju
College of Science, North China University of Science and Technology, Tangshan, China.
Front Chem. 2020 Nov 5;8:609118. doi: 10.3389/fchem.2020.609118. eCollection 2020.
Realizing rich topological elements in topological materials has attracted increasing attention in the fields of chemistry, physics, and materials science. Topological semimetals/metals are classified into three main types: nodal-point, nodal-line, and nodal-surface types with zero-, one-, and two-dimensional topological elements, respectively. This study reports that XPt (X = Sc, Y, La) intermetallic compounds are topological metals with opened and closed nodal lines, and triply degenerate nodal points (TNPs) when the spin-orbit coupling (SOC) is ignored. Based on the calculated phonon dispersions, one can find that ScPt and YPt are dynamically stable whereas LaPt is not. When SOC is added, the one-dimensional nodal line and zero-dimensional TNPs disappear. Interestingly, a new zero-dimensional topological element, that is, Dirac points with 4-fold degenerate isolated band crossings with linear band dispersion appear. The proposed materials can be considered a good platform to realize zero- and one-dimensional topological elements in a single compound and to study the relationship between zero- and one-dimensional topological elements.
在拓扑材料中实现丰富的拓扑元素已在化学、物理和材料科学领域引起越来越多的关注。拓扑半金属/金属主要分为三种类型:分别具有零维、一维和二维拓扑元素的节点点型、节线型和节面型。本研究报告称,当忽略自旋轨道耦合(SOC)时,XPt(X = Sc、Y、La)金属间化合物是具有开放和封闭节线以及三重简并节点点(TNP)的拓扑金属。基于计算出的声子色散,可以发现ScPt和YPt是动态稳定的,而LaPt则不是。当加入SOC时,一维节线和零维TNP消失。有趣的是,出现了一种新的零维拓扑元素,即具有线性带色散的4重简并孤立带交叉的狄拉克点。所提出的材料可被视为在单一化合物中实现零维和一维拓扑元素以及研究零维和一维拓扑元素之间关系的良好平台。