论文标题
Dirac Gap调制的性质和轴抗铁磁拓扑绝缘子MNBI $ _2 $ TE $ _4 $
Nature of the Dirac gap modulation and surface magnetic interaction in axion antiferromagnetic topological insulator MnBi$_2$Te$_4$
论文作者
论文摘要
在反铁磁(AFM)轴承拓扑绝缘子MNBI $ _2 $ _2 $ _4 $及其电子和旋转结构中,通过角度和自旋分辨光发射光谱(ARPE)研究了,在激发温度的变化下,通过角度和自旋分辨光光度光谱(ARPE)进行了研究(9-355〜K),磁性(9-355〜K),修改dirac Point(DP)的间隙(DP)的修改。我们在ARPES分散剂中的DP处区分了一个大的(62-67〜MEV)和减少(15-18〜MEV)的间隙,该间隙保持在Néel温度以上($ T_ \ Mathrm {n} = 24.5 $ 〜K)。我们建议,由于手性旋转波动产生的短距离磁场,高于$ t_ \ mathrm {n} $上方的间隙保持开放。自旋分辨的ARPE,XMCD和圆形二色性ARPES测量显示了大间隙样品的表面铁磁有序,并显着降低了减少间隙样品的有效磁矩。由于结构缺陷和机械干扰,这些影响可能与拓扑DC状态向第二MN层的转移有关,在该磁性缺陷和机械干扰受到相反磁矩的补偿效果的影响。
Modification of the gap at the Dirac point (DP) in antiferromagnetic (AFM) axion topological insulator MnBi$_2$Te$_4$ and its electronic and spin structure has been studied by angle- and spin-resolved photoemission spectroscopy (ARPES) under laser excitation with variation of temperature (9-35~K), light polarization and photon energy. We have distinguished both a large (62-67~meV) and a reduced (15-18~meV) gap at the DP in the ARPES dispersions, which remains open above the Néel temperature ($T_\mathrm{N}=24.5$~K). We propose that the gap above $T_\mathrm{N}$ remains open due to short-range magnetic field generated by chiral spin fluctuations. Spin-resolved ARPES, XMCD and circular dichroism ARPES measurements show a surface ferromagnetic ordering for large-gap sample and significantly reduced effective magnetic moment for the reduced-gap sample. These effects can be associated with a shift of the topological DC state towards the second Mn layer due to structural defects and mechanical disturbance, where it is influenced by a compensated effect of opposite magnetic moments.