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Related papers: Surfaces of Axion Insulators

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A 3D fermionic topological insulator has a gapless Dirac surface state protected by time-reversal symmetry and charge conservation symmetry. The surface state can be gapped by introducing ferromagnetism to break time-reversal symmetry,…

Strongly Correlated Electrons · Physics 2013-09-24 Parsa Bonderson , Chetan Nayak , Xiao-Liang Qi

We present a theoretical investigation of electron states hosted by magnetic domain walls on the 3D topological insulator surface. The consideration includes the domain walls with distinct vectorial and spatial textures. The study is…

Mesoscale and Nanoscale Physics · Physics 2021-07-21 I. P. Rusinov , V. N. Men'shov , E. V. Chulkov

Topological insulators (TIs) are a novel class of materials with nontrivial surface or edge states. Time-reversal symmetry (TRS) protected TIs are characterized by the Z2 topological invariant and their helical property becomes lost in an…

Mesoscale and Nanoscale Physics · Physics 2015-03-10 Lingjie Du , Ivan Knez , Gerard Sullivan , Rui-Rui Du

We investigate magnetotransport in exfoliated nanostructures of the candidate magnetic 3D topological insulator $\mathrm{EuSn_{2}As_{2}}$. Similar to macroscopic single crystals, the negative magnetoresistance observed below the N\'eel…

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…

We study the surface of a three-dimensional spin chiral $\mathrm{Z}_2$ topological insulator (class CII), demonstrating the possibility of its localization. This arises through an interplay of interaction and statistically-symmetric…

Strongly Correlated Electrons · Physics 2019-04-17 Yang-Zhi Chou , Rahul M. Nandkishore , Leo Radzihovsky

Topological insulator with antiferromagnetic order can serve as an ideal platform for the realization of axion electrodynamics. In this paper, we report a systematic study of the axion topological insulator candidate EuIn$_2$As$_2$. A…

Strongly Correlated Electrons · Physics 2020-05-27 Yang Zhang , Ke Deng , Xiao Zhang , Meng Wang , Yuan Wang , Cai Liu , Jia-Wei Mei , Shiv Kumar , Eike F. Schwier , Kenya Shimada , Chaoyu Chen , Bing Shen

Topological insulators have an insulating bulk but a metallic surface. In the simplest case, the surface electronic structure of a 3D topological insulator is described by a single 2D Dirac cone. A single 2D Dirac fermion cannot be realized…

Mesoscale and Nanoscale Physics · Physics 2013-04-08 Jens H. Bardarson , Joel E. Moore

Ordered states of matter are typically categorized by their broken symmetries. With the ordering of spins in a ferromagnet or the freezing of a liquid into a solid, the loss of symmetry distinguishes the ordered state from the disordered…

Strongly Correlated Electrons · Physics 2017-10-17 R. Valdés Aguilar , A. V. Stier , W. Liu , L. S. Bilbro , D. K. George , N. Bansal , L. Wu , J. Cerne , A. G. Markelz , S. Oh , N. P. Armitage

We propose a $\mathbb{Z}_{2}$ classification of Abelian time-reversal fractional topological insulators in terms of the composite fermions picture. We consider the standard toy model where spin up and down electrons are subjected to…

Strongly Correlated Electrons · Physics 2012-02-24 Dario Ferraro , Giovanni Viola

The electromagnetic response of three-dimensional topological insulators can be described by an effective axion action with a quantized axion field. Once both time-reversal and inversion symmetries are broken, for example, in…

Mesoscale and Nanoscale Physics · Physics 2025-02-20 Tongshuai Zhu , Huaiqiang Wang , Dingyu Xing , Haijun Zhang

The MnBi$_2$Te$_4$ material family has emerged as a key platform for exploring magnetic topological phases, most notably exemplified by the experimental realization of the axion insulator state. While spin dynamics are known to…

Mesoscale and Nanoscale Physics · Physics 2025-10-21 Yiliang Fan , Rongxiang Zhu , Tongshuai Zhu , Jianzhou Zhao , Huaiqiang Wang , Haijun Zhang

We study the topological features of non-interacting insulators subject to an antiferromangetic (AFM) Zeeman field, or AFM insulators, the period of which is commensurate with the lattice period. These insulators can be classified by the…

Mesoscale and Nanoscale Physics · Physics 2013-10-21 Chen Fang , Matthew J. Gilbert , B. Andrei Bernevig

Antiferromagnetic (AF) topological materials offer a fertile ground to explore a variety of quantum phenomena such as axion magnetoelectric dynamics and chiral Majorana fermions. To realize such intriguing states, it is essential to…

Recently, correlated physics such as superconductivity and insulator at commensurate fractional electron fillings has been discovered in several different systems with Moire superlattice and narrow electron bands near charge neutrality.…

Strongly Correlated Electrons · Physics 2018-10-12 Chao-Ming Jian , Cenke Xu

We numerically investigate the surface states of a strong topological insulator in the presence of strong electron-electron interactions. We choose a spherical topological insulator geometry to make the surface amenable to a finite size…

Strongly Correlated Electrons · Physics 2015-07-08 T. Neupert , S. Rachel , R. Thomale , M. Greiter

Extending the notion of symmetry protected topological phases to insulating antiferromagnets (AFs) described in terms of opposite magnetic dipole moments associated with the magnetic N$\acute{{\rm{e}}} $el order, we establish a bosonic…

Mesoscale and Nanoscale Physics · Physics 2017-12-12 Kouki Nakata , Se Kwon Kim , Jelena Klinovaja , Daniel Loss

We prove the existence of higher-order topological insulators in: {\it i}) fourfold rotoinversion invariant bulk crystals, and {\it ii}) inversion-symmetric systems with or without an additional three-fold rotation symmetry. These states of…

Mesoscale and Nanoscale Physics · Physics 2018-08-22 Guido van Miert , Carmine Ortix

The intricate interplay between nontrivial topology and magnetism in two-dimensional (2D) materials has led to the emergence of many novel phenomena and functionalities. An outstanding example is the quantum anomalous Hall (QAH) effect,…

Mesoscale and Nanoscale Physics · Physics 2020-01-24 Chang Liu , Yongchao Wang , Hao Li , Yang Wu , Yaoxin Li , Jiaheng Li , Ke He , Yong Xu , Jinsong Zhang , Yayu Wang

We propose a memory device based on magnetically doped surfaces of 3D topological insulators. Magnetic information stored on the surface is read out via the quantized Hall effect, which is characterized by a topological invariant.…

Mesoscale and Nanoscale Physics · Physics 2011-09-09 T. Fujita , M. B. A. Jalil , S. G. Tan