English

Sample-dependent Dirac point gap in MnBi$_2$Te$_4$ and its response to the applied surface charge: a combined photoemission and ab initio study

Materials Science 2021-10-04 v1 Mesoscale and Nanoscale Physics

Abstract

Recently discovered intrinsic antiferromagnetic topological insulator MnBi2_2Te4_4 presents an exciting platform for realization of the quantum anomalous Hall effect and a number of related phenomena at elevated temperatures. An important characteristic making this material attractive for applications is its predicted large magnetic gap at the Dirac point (DP). However, while the early experimental measurements reported on large DP gaps, a number of recent studies claimed to observe a gapless dispersion of the MnBi2_2Te4_4 Dirac cone. Here, using micro(μ\mu)-laser angle-resolved photoemission spectroscopy, we study the electronic structure of 15 different MnBi2_2Te4_4 samples, grown by two different chemists groups. Based on the careful energy distribution curves analysis, the DP gaps between 15 and 65 meV are observed, as measured below the N\'eel temperature at about 10-16 K. At that, roughly half of the studied samples show the DP gap of about 30 meV, while for a quarter of the samples the gaps are in the 50 to 60 meV range. Summarizing the results of both our and other groups, in the currently available MnBi2_2Te4_4 samples the DP gap can acquire an arbitrary value between a few and several tens of meV. Further, based on the density functional theory, we discuss a possible factor that might contribute to the reduction of the DP gap size, which is the excess surface charge that can appear due to various defects in surface region. We demonstrate that the DP gap is influenced by the applied surface charge and even can be closed, which can be taken advantage of to tune the MnBi2_2Te4_4 DP gap size.

Keywords

Cite

@article{arxiv.2107.04428,
  title  = {Sample-dependent Dirac point gap in MnBi$_2$Te$_4$ and its response to the applied surface charge: a combined photoemission and ab initio study},
  author = {A. M. Shikin and D. A. Estyunin and N. L. Zaitsev and D. Glazkova and I. I. Klimovskikh and S. Filnov and A. G. Rybkin and E. F. Schwier and S. Kumar and A. Kimura and N. Mamedov and Z. Aliev and M. B. Babanly and K. Kokh and O. E. Tereshchenko and M. M. Otrokov and E. V. Chulkov and K. A. Zvezdin and A. K. Zvezdin},
  journal= {arXiv preprint arXiv:2107.04428},
  year   = {2021}
}