Coexistence of Surface Ferromagnetism and a Gapless Topological State in MnBi2Te4

Jiaqiang Yan, R. G. Moore, H. Miao, Haoxiang Li, D. Nevola, Ho Nyung Lee, P. D. Johnson
2020-09-09

SCID:  54.1/yga3e8nj
Surface magnetism and its correlation with the electronic structure are critical to understanding the topological surface state in the intrinsic magnetic topological insulator MnBi_{2}Te_{4}. Here, using static and time resolved angle-resolved photoemission spectroscopy (ARPES), we find a significant ARPES intensity change together with a gap opening on a Rashba-like conduction band. Comparison with a model simulation strongly indicates that the surface magnetism on cleaved MnBi_{2}Te_{4} is the same as its bulk state. The inability of surface ferromagnetism to open a gap in the topological surface state uncovers the novel complexity of MnBi_{2}Te_{4} that may be responsible for the low quantum anomalous Hall temperature of exfoliated MnBi_{2}Te_{4}.
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2020-09-09
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Jiaqiang Yan
R. G. Moore
H. Miao
Haoxiang Li
D. Nevola
Ho Nyung Lee
P. D. Johnson
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