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Gapless surface Dirac cone in antiferromagnetic topological insulator MnBi$_2$Te$_4$

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arxiv 1907.03722 v2 pith:J7PX6PL2 submitted 2019-07-08 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords topologicalsurfaceinsulatormagneticantiferromagneticbulkconedirac
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abstract

The recent discovered antiferromagnetic topological insulators in Mn-Bi-Te family with intrinsic magnetic ordering have rapidly drawn broad interest since its cleaved surface state is believed to be gapped, hosting the unprecedented axion states with half-integer quantum Hall effect. Here, however, we show unambiguously by using high-resolution angle-resolved photoemission spectroscopy that a gapless Dirac cone at the (0001) surface of MnBi$_2$Te$_4$ exists between the bulk band gap. Such unexpected surface state remains unchanged across the bulk N\'eel temperature, and is even robust against severe surface degradation, indicating additional topological protection. Through symmetry analysis and $\textit{ab}$-$\textit{initio}$ calculations we consider different types of surface reconstruction of the magnetic moments as possible origins giving rise to such linear dispersion. Our results reveal that the intrinsic magnetic topological insulator hosts a rich platform to realize various topological phases such as topological crystalline insulator and time-reversal-preserved topological insulator, by tuning the magnetic configurations.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Competing magnetic interactions in the antiferromagnetic topological insulator MnBi$_{2}$Te$_{4}$

    cond-mat.str-el 2019-08 conditional novelty 7.0 of 10

    Spin-wave measurements show that MnBi2Te4 has frustrated intralayer magnetic exchange close to the classical limit for ferromagnetism.

  2. Exchange Bias and Quantum Anomalous Hall Effect in the MnBi2Te4-CrI3 Heterostructure

    cond-mat.mtrl-sci 2019-08 conditional novelty 6.0 of 10

    DFT calculations predict that CrI3 proximity induces a 40 meV exchange bias in MnBi2Te4 films, enabling zero-field QAH states with Chern numbers 1 and 3.

  3. Flat Chern Band From Twisted Bilayer MnBi$_2$Te$_4$

    cond-mat.mes-hall 2019-08 conditional novelty 6.0 of 10

    A twisted bilayer of MnBi2Te4 is predicted to host an isolated flat Chern band at about one degree twist, offering a time-reversal-broken moire platform for correlated topological states.

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