论文标题
影响反铁磁MNBI拓扑状态的能量差距的因素$ _2 $ te $ _4 $
Factors influencing the energy gap in topological states of antiferromagnetic MnBi$_2$Te$_4$
论文作者
论文摘要
MNBI $ _ {2} $ te $ _ {4} $样品的实验测量的角度分辨光发射映射图(DP)显示出不同的能量差距(DP),将其与理论计算的结果进行比较,以找到理论和实验之间的最佳协议和实验之间的条件。 We have analyzed different factors which influence the Dirac gap width: (i) the surface van der Waals (SvdW) distance between the first and second septuple layers (SLs), (ii) the magnetic moment on Mn atoms, (iii) the spin-orbit coupling (SOC) strength for the surface Te and Bi atoms and related changes in the localization of the topological surface states (TSSs).结果表明,所有这些因素都可能在DP的差距范围从5范围内改变到$ \ sim $ 90〜MEV。我们表明,狄拉克间隙变化主要取决于TSSS空间分布的相应变化。提出的实验数据(与$ \ sim $ 15至55〜eMEV之间的DIRAC差距之间的最佳一致性)和计算发生在略有压缩的SVDW间隔(与体积值相比,大约-3.5〜%\%)具有改良的SOC,而SCOE会进行了修改的SOC(在近距离表面的各种缺陷中可能发生)。我们表明,在更改SVDW间隔和表面SOC强度的值后,TSSS空间分布在SLS之间具有相反的磁化,这会导致DIRAC间隙大小的非单调变化。
The experimentally measured angle-resolved photoemission dispersion maps for MnBi$_{2}$Te$_{4}$ samples, which show different energy gaps at the Dirac point (DP), are compared with the results of theoretical calculations to find the conditions for the best agreement between theory and experiment. We have analyzed different factors which influence the Dirac gap width: (i) the surface van der Waals (SvdW) distance between the first and second septuple layers (SLs), (ii) the magnetic moment on Mn atoms, (iii) the spin-orbit coupling (SOC) strength for the surface Te and Bi atoms and related changes in the localization of the topological surface states (TSSs). It was shown that all these factors may change the gap width at the DP in a wide range from 5 to $\sim$90~meV. We show that the Dirac gap variation is mainly determined by the corresponding changes in the TSSs spatial distribution. The best agreement between the presented experimental data (with the Dirac gaps between $\sim$15 and 55~meV) and the calculations takes place for a slightly compressed SvdW interval (of about -3.5~\% compared to the bulk value) with modified SOC for surface atoms (that can occur in the presence of various defects in the near-surface region). We show that upon changing the values of the SvdW interval and surface SOC strength the TSSs spatial distribution shifts between the SLs with opposite magnetizations, which leads to a non-monotonic change in the Dirac gap size.