论文标题

第一原则计算中雪佛兰相材料中的拓扑状态

Topological States in Chevrel Phase Materials from First-principle Calculations

论文作者

Zhang, Shuai, Peng, Shiyu, Dai, Xi, Weng, Hongming

论文摘要

雪佛兰相材料形成了带有通用化学配方$ a_x {\ rm mo} _6x_8 $($ a $ a $ =金属元素,$ x $ = chalcogen)的三元钼硫化基质的家族。 $ a $ a原子的种类繁多,可带来大量家庭成员,并导致许多可调的物理特性,例如超导性,热电性和离子电导率。在这项工作中,我们通过使用第一原则计算在这些材料中进一步发现了各种非平凡带拓扑状态。具有时间反向对称性的化合物,例如$ {\ rm bamo} _6 {\ rm s} _8 $,$ {\ rm srmo} _6 {\ rm s} _8 $ $ r \ bar {3} $和$ p \ bar {1} $阶段,而$ {\ rm eumo} _6 _6 {\ rm s} _8 $在FerromAgnetic状态内,它是$ r \ bar {3} $ phase in trivial in trivial in n the $ p \ bar的轴线绝缘器。这表明$ a $一个离子的变化可以改变化学势,晶格失真和磁性,这提供了一种独特的影响拓扑状态和其他特性的方式。我们希望这项工作可以刺激对雪佛兰相材料的进一步研究,以找到更多有趣的现象,例如拓扑超导状态和主要模式。

Chevrel phase materials form a family of ternary molybdenum chalcogenides with a general chemical formula $A_x{\rm Mo}_6X_8$ ($A$ = metal elements, $X$ = chalcogen). The variety of $A$ atoms makes a large number of family members and leads to many tunable physical properties, such as the superconductivity, thermoelectricity and the ionic conductivity. In this work, we have further found various nontrivial band topological states in these materials by using first-principle calculations. The compounds having time-reversal symmetry, such as ${\rm BaMo}_6{\rm S}_8$, ${\rm SrMo}_6{\rm S}_8$, and ${\rm Mo}_6{\rm S}_8$, are topological insulators in both of the $R\bar{3}$ and $P\bar{1}$ phases, whereas ${\rm EuMo}_6{\rm S}_8$ within ferromagnetic state, it is an axion insulator in the $R\bar{3}$ phase and a trivial one in the $P\bar{1}$ phase. This indicates that the change of $A$ ions can modify the chemical potential, lattice distortion, and magnetic orders, which offers a unique way to influence the topological states and other properties. We hope this work can stimulate further studies of Chevrel phase materials to find more intriguing phenomena, such as topological superconducting states and Majorana modes.

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