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Inducing a magnetic gap at the Dirac point of the topological surface state (TSS) in a 3D topological insulator (TI) is a route to dissipationless charge and spin currents. Ideally, magnetic order is present only at the surface and not in…

Magnetic topological insulators (TI) provide an important material platform to explore quantum phenomena such as quantized anomalous Hall (QAH) effect and Majorana modes, etc. Their successful material realization is thus essential for our…

Mn-rich MnSb$_2$Te$_4$ is a ferromagnetic topological insulator with yet the highest Curie temperature T_C = 45-50 K. It exhibits a magnetic gap at the Dirac point of the topological surface state that disappears above T_C. By scanning…

Mesoscale and Nanoscale Physics · Physics 2022-02-24 Philipp Küppers , Jannik Zenner , Stefan Wimmer , Gunther Springholz , Oliver Rader , Marcus Liebmann , Markus Morgenstern

Magnetic topological insulators can host chiral 1D edge channels at zero magnetic field, when a magnetic gap opens at the Dirac point in the band structure of 2D topological surface states, leading to the quantum anomalous Hall effect in…

The realization of the coexistence of various topologically nontrivial surface states in one material is expected to lay a foundation for new electric applications with selective robust spin current. Here we apply the magnetoconductivity…

Materials Science · Physics 2022-06-13 Jingyuan Zhong , Ming Yang , Fei Ye , Chen Liu , Jiaou Wang , Weichang Hao , Jincheng Zhuang , Yi Du

In magnetic topological insulators (TIs), the interplay between magnetic order and nontrivial topology can induce fascinating topological quantum phenomena, such as the quantum anomalous Hall effect, chiral Majorana fermions and axion…

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…

Materials Science · Physics 2020-06-24 Yonghao Yuan , Xintong Wang , Hao Li , Jiaheng Li , Yu Ji , Zhenqi Hao , Yang Wu , Ke He , Yayu Wang , Yong Xu , Wenhui Duan , Wei Li , Qi-Kun Xue

The discovery of an intrinsic antiferromagnetic topological insulator (AFM-TI) in MnBi$_2$Te$_4$ has attracted intense attention, most of which lies on its electrical properties. In this paper, we report electronic, thermal, and…

Materials Science · Physics 2022-05-25 H. Zhang , C. Q. Xu , S. H. Lee , Z. Q. Mao , X. Ke

BaMg2Bi2 is a Dirac semimetal characterized by a simple Dirac cone crossing the Fermi level at the center of the Brillouin zone, protected by C3 rotational symmetry. Together with its Sr-based analogue SrMg2Bi2, it has been proposed as a…

The intrinsic magnetic topological material MnBi2Te4 has demonstrated great potential to investigate the interplay between topology and magnetism, which opens up new avenues for manipulating non-trivial electronic states and designing…

Magnetic topological insulators (TIs) herald a wealth of applications in spin-based technologies, relying on the novel quantum phenomena provided by their topological properties. Particularly promising is the…

The unoccupied part of the band structure in the magnetic topological insulator MnBi$_2$Te$_4$ is studied by first-principles calculations. We find a second, unoccupied topological surface state with similar electronic structure to the…

Mesoscale and Nanoscale Physics · Physics 2022-08-16 Yadong Jiang , Zhaochen Liu , Jing Wang

As an ideal platform for studying interplays between symmetry, topology and magnetism, the magnetic topological insulator (MTI) MnBi2Te4 has attracted extensive attentions. However, its strong n-type intrinsic defects hinder the…

Materials Science · Physics 2025-05-29 Zhijian Shi , Shengjie Xu , Jianfeng Wang , Yi Du , Weichang Hao

Dirac semi-metal with magnetic atoms as constituents delivers an interesting platform to investigate the interplay of Fermi surface (FS) topology, electron correlation, and magnetism. One such family of semi-metal is YbMn$Pn_2$ ($Pn$ = Sb,…

Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by breaking time-reversal symmetry and to enable novel topological phases. Epitaxial (Bi$_{1-x}$Mn$_{x}$)$_{2}$Se$_{3}$ is a prototypical magnetic…

The first experimental evidence is presented of the topological insulator state in PbBi$_{2}$Te$_{4}$. A single surface Dirac cone is observed by angle-resolved photoemission spectroscopy (ARPES) with synchrotron radiation. Topological…

The antiferromagnetic (AF) compound MnBi$_{2}$Te$_{4}$ is suggested to be the first realization of an antiferromagnetic (AF) topological insulator. Here we report on inelastic neutron scattering studies of the magnetic interactions in…

Strongly Correlated Electrons · Physics 2020-04-29 J. -Q. Yan , D. Pajerowski , Liqin Ke , A. M. Nedić , Y. Sizyuk , Elijah Gordon , P. P. Orth , D. Vaknin , R. J. McQueeney

Monolayer MX$_2$ (M = Mo, W; X = S, Se) has drawn much attention recently for its possible application possibilities for optoelectronics, spintronics, and valleytronics. Its exotic optical and electronic properties include a direct band…

Materials Science · Physics 2016-01-08 Beom Seo Kim , Jun-Won Rhim , Beomyoung Kim , Changyoung Kim , Seung Ryong Park

MnBi$_2$Te$_4$ is a promising representative of intrinsic antiferromagnetic topological insulators, which could enable rare quantum mechanical effects like the quantum anomalous Hall effect. Especially at low temperatures, numerous studies…

Strongly Correlated Electrons · Physics 2022-11-11 M. Köpf , S. H. Lee , Z. Q. Mao , C. A. Kuntscher