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三元六角化合物BaAgBi中电子态跃迁的计算模拟

Computational Simulation of the Electronic State Transition in the Ternary Hexagonal Compound BaAgBi.

作者信息

Chang Yu, Wang Xin, Na Sanggyun, Zhang Weiwei

机构信息

Tonghua Normal University, Tonghua, China.

Wonkwang University, Iksan, South Korea.

出版信息

Front Chem. 2021 Nov 11;9:796323. doi: 10.3389/fchem.2021.796323. eCollection 2021.

Abstract

Topological properties in metals or semimetals have sparked tremendous scientific interest in quantum chemistry because of their exotic surface state behavior. The current research focus is still on discovering ideal topological metal material candidates. We propose a ternary compound with a hexagonal crystal structure, BaAgBi, which was discovered to exhibit two Weyl nodal ring states around the Fermi energy level without the spin-orbit coupling (SOC) effect using theoretical calculations. When the SOC effect is considered, the topological phases transform into two Dirac nodal line states, and their locations also shift from the Weyl nodal rings. The surface states of both the Weyl nodal ring and Dirac nodal lines were calculated on the (001) surface projection using a tight-binding Hamiltonian, and clear drumhead states were observed, with large spatial distribution areas and wide energy variation ranges. These topological features in BaAgBi can be very beneficial for experimental detection, inspiring further experimental investigation.

摘要

由于金属或半金属中的拓扑性质具有奇异的表面态行为,因此在量子化学领域引发了巨大的科学兴趣。当前的研究重点仍在于发现理想的拓扑金属材料候选物。我们提出了一种具有六方晶体结构的三元化合物BaAgBi,通过理论计算发现,在没有自旋轨道耦合(SOC)效应的情况下,它在费米能级附近呈现出两个外尔节线环态。当考虑SOC效应时,拓扑相转变为两个狄拉克节线态,并且它们的位置也从外尔节线环处发生了偏移。使用紧束缚哈密顿量在(001)表面投影上计算了外尔节线环和狄拉克节线的表面态,观察到了清晰的鼓面态,其具有较大的空间分布区域和较宽的能量变化范围。BaAgBi中的这些拓扑特征对实验检测非常有利,有望激发进一步的实验研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f47c/8631810/0662f7222194/fchem-09-796323-g001.jpg

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