论文标题

通过扫描隧道显微镜和光谱法扫描MNBI2TE4的电子状态和磁反应

Electronic states and magnetic response of MnBi2Te4 by scanning tunneling microscopy and spectroscopy

论文作者

Yuan, Yonghao, Wang, Xintong, Li, Hao, Li, Jiaheng, Ji, Yu, Hao, Zhenqi, Wu, Yang, He, Ke, Wang, Yayu, Xu, Yong, Duan, Wenhui, Li, Wei, Xue, Qi-Kun

论文摘要

在最近发现的固有磁性绝缘子MNBI2TE4中已经证明了外来量子现象。在其二维极限下,分别在MNBI2TE4的奇数甚至层中观察到量子异常的效果和轴突绝缘子状态。测得的带结构表现出有趣且复杂的特性。在这里,我们采用低温扫描隧道显微镜研究其表面状态和磁反应。准颗粒干扰模式表明,MNBI2TE4最高层的电子结构与预期的平面外A型反铁磁相的不同。拓扑表面状态可以嵌入最高表面以下的较深层中。这种新型的电子结构大概与在表面附近Mn原子的磁矩切割和重新定位过程中的晶体结构的修饰有关。观察到在第二个原子层的BI位置取代的Mn掺杂剂。 MN/BI取代的比率为5%。电子结构在表面上以原子量尺度波动,这可能会影响MNBI2TE4的磁性。我们的发现在MNBI2TE4的磁性特性上开发了新的灯,从而设计了磁性拓扑绝缘子的设计。

Exotic quantum phenomena have been demonstrated in recently discovered intrinsic magnetic topological insulator MnBi2Te4. At its two-dimensional limit, quantum anomalous Hall (QAH) effect and axion insulator state are observed in odd and even layers of MnBi2Te4, respectively. The measured band structures exhibit intriguing and complex properties. Here we employ low-temperature scanning tunneling microscopy to study its surface states and magnetic response. The quasiparticle interference patterns indicate that the electronic structures on the topmost layer of MnBi2Te4 is different from that of the expected out-of-plane A-type antiferromagnetic phase. The topological surface states may be embedded in deeper layers beneath the topmost surface. Such novel electronic structure presumably related to the modification of crystalline structure during sample cleaving and re-orientation of magnetic moment of Mn atoms near the surface. Mn dopants substituted at the Bi site on the second atomic layer are observed. The ratio of Mn/Bi substitutions is 5%. The electronic structures are fluctuating at atomic scale on the surface, which can affect the magnetism of MnBi2Te4. Our findings shed new lights on the magnetic property of MnBi2Te4 and thus the design of magnetic topological insulators.

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