材料科学
曲面(拓扑)
凝聚态物理
物理
几何学
数学
作者
Dezhi Song,Fei Hang,Gang Yao,Jun Zhang,Ye-Ping Jiang,Jinfeng Jia
标识
DOI:10.1088/0256-307x/42/9/090702
摘要
Abstract The intrinsic antiferromagnetic topological insulators in the Mn-Bi-Te family, composed of superlattice-like MnBi 2 Te 4 /(Bi 2 Te 3 ) n ( n = 0, 1, 2, 3…) layered structure, present intriguing states of matter such as quantum anomalous Hall effect and the axion insulator. However, the surface state gap, which is the prerequisite for the observation of these states, remains elusive. Here by molecular beam epitaxy, we obtain two types of MnBi 4 Te 7 films with the exclusive Bi 2 Te 3 (BT) or MnBi 2 Te 4 (MBT) terminations. By scanning tunneling spectroscopy, the mass terms in the surface states are identified on both surface terminations. Experimental results reveal the existence of a hybridization gap of approximately 23 meV in surface states on the BT termination. This gap comes from the hybridization between the surface states and the spin-split states in the adjacent MBT layer. On the MBT termination, an exchange mass term of about 28 ±2 meV in surface states is identified by taking magnetic-field-dependent Landau level spectra as well as theoretical simulations. In addition, the mass term varies with the field in the film with a heavy BiMn doping level in the Mn layers. These findings demonstrate the existence of mass terms in surface states on both types of terminations in our epitaxial MnBi 4 Te 7 films investigated by local probes.
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