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Emergence of Topological insulator and Nodal line semi-metal states in XX′Bi (X = Na K Rb Cs; X′ = Ca Sr)

机译:XXBi(X = NaKRbCs; X= CaSr)的拓扑绝缘体和节点线半金属态的出现

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摘要

In this article, we predict the emergence of non-trivial band topology in the family of XX′Bi compounds having P6¯2m (# 189) space group. Using first principles calculations within hybrid functional framework, we demonstrate that NaSrBi and NaCaBi are strong topological insulator under controlled band engineering. Here, we propose three different ways to engineer the band topology to get a non-trivial order: (i) hydrostatic pressure, (ii) biaxial strain (due to epitaxial mismatch), and (iii) doping. Non-triviality is confirmed by investigating bulk band inversion, topological Z2 invariant, surface dispersion and spin texture. Interestingly, some of these compounds also show a three dimensional topological nodal line semi-metal (NLS) state in the absence of spin orbit coupling (SOC). In these NLS phases, the closed loop of band degeneracy in the Brillouin zone lie close to the Fermi level. Moreover, a drumhead like flat surface state is observed on projecting the bulk state on the [001] surface. The inclusion of SOC opens up a small band gap making them behave like a topological insulator.
机译:在本文中,我们预测了具有 P <移动器accent =” true“> 6 2 m (#189)空间组。使用混合功能框架内的第一性原理计算,我们证明了NaSrBi和NaCaBi在受控带工程下是强拓扑绝缘体。在这里,我们提出了三种不同的方法来设计能带拓扑结构以获得不平凡的顺序:(i)静水压力,(ii)双轴应变(由于外延失配)和(iii)掺杂。通过研究体带反演,Z2拓扑不变性,表面色散和自旋织构,可以确定非平凡性。有趣的是,其中一些化合物在没有自旋轨道耦合(SOC)的情况下也显示了三维拓扑结线半金属(NLS)状态。在这些NLS阶段,布里渊区的频带简并性闭环位于费米能级附近。此外,在将主体状态投影在[001]表面上时,观察到鼓面状的平坦表面状态。包含SOC会打开一个小的带隙,使其表现得像拓扑绝缘体。

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