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A type of novel Weyl semimetal candidate: layered transition metal monochalcogenides Mo2XY (X, Y = S, Se, Te, X not equal Y)

机译:一种新颖的半金属新形式的候选人:分层过渡金属monochalcogenides Mo2XY (X, Y =年代,Se、Te X不等于Y)

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摘要

Based on ab initio calculations and the Wannier-based tight-binding method, we studied the topological electronic properties and strain modulation of transition metal monochalcogenides (TMM) Mo2XY (X, Y = S, Se, Te, X not equal Y). These materials are nodal line semimetals in the absence of spin-orbit coupling (SOC). The presence of SOC turns them into Weyl semimetals with 24 Weyl nodes located in the k(z) not equal 0 planes and related by time-reversal, rotation C-3z, and mirror symmetries. The maximal separation between two neighboring Weyl points with opposite chirality is of the order of magnitude of 0.10 angstrom(-1), which can be readily accessed by angle-resolved photoemission spectroscopy (ARPES). The Weyl semimetal phase shows great robustness and demonstrates different responses under uniaxial and biaxial strain. Intriguingly, the location of the Weyl point changes significantly, resulting in a striking modulation of topological properties under in-plane biaxial strain. Our finding provides a realistic and promising platform for studying and manipulating the behavior of Weyl fermions in experiments.
机译:基于从头开始计算的Wannier-based紧束缚方法,我们研究了拓扑电子性质和压力过渡金属monochalcogenides调制(TMM) Mo2XY (X, Y = S, Se、Te X不等于Y)。这些材料是节线的半金属没有在手性耦合(SOC)。SOC它们变成半金属新形式的存在与新形式24节点位于k (z)不平等0飞机和相关逆时,旋转C-3z,镜像对称。新形式分离两个相邻点相反的手性的顺序震级为0.10埃(1)容易访问angle-resolved光电发射光谱学(arp)。展示了这个例子演示了不同和鲁棒性在单轴和双轴应变的反应。有趣的是,新形式的位置点显著变化,导致引人注目调制下的拓扑性质平面双轴应变。学习和现实和有前途的平台新形式的操纵行为费米子实验。

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