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Topological Magnetic Materials of the (MnSb2Te4)·(Sb2Te3)n van der Waals Compounds Family.
Eremeev, S V; Rusinov, I P; Koroteev, Yu M; Vyazovskaya, A Yu; Hoffmann, M; Echenique, P M; Ernst, A; Otrokov, M M; Chulkov, E V.
Affiliation
  • Eremeev SV; Institute of Strength Physics and Materials Science, Russian Academy of Sciences, 634021 Tomsk, Russia.
  • Rusinov IP; Tomsk State University, 634050 Tomsk, Russia.
  • Koroteev YM; Tomsk State University, 634050 Tomsk, Russia.
  • Vyazovskaya AY; Saint Petersburg State University, 198504 Saint Petersburg, Russia.
  • Hoffmann M; Institute of Strength Physics and Materials Science, Russian Academy of Sciences, 634021 Tomsk, Russia.
  • Echenique PM; Tomsk State University, 634050 Tomsk, Russia.
  • Ernst A; Saint Petersburg State University, 198504 Saint Petersburg, Russia.
  • Otrokov MM; Institut für Theoretische Physik, Johannes Kepler Universität, A 4040 Linz, Austria.
  • Chulkov EV; Centro de Física de Materiales (CFM-MPC), Centro Mixto CSIC-UPV/EHU, 20018 Donostia-San Sebastián, Basque Country, Spain.
J Phys Chem Lett ; 12(17): 4268-4277, 2021 May 06.
Article in En | MEDLINE | ID: mdl-33908787
Using density functional theory, we propose the (MnSb2Te4)·(Sb2Te3)n family of stoichiometric van der Waals compounds that harbor multiple topologically nontrivial magnetic phases. In the ground state, the first three members of the family (n = 0, 1, 2) are 3D antiferromagnetic topological insulators, while for n ≥ 3 a special phase is formed, in which a nontrivial topological order coexists with a partial magnetic disorder in the system of the decoupled 2D ferromagnets, whose magnetizations point randomly along the third direction. Furthermore, due to a weak interlayer exchange coupling, these materials can be field-driven into the FM Weyl semimetal (n = 0) or FM axion insulator states (n ≥ 1). Finally, in two dimensions, we reveal these systems to show intrinsic quantum anomalous Hall and AFM axion insulator states, as well as quantum Hall state, achieved under external magnetic field. Our results demonstrate that MnSb2Te4 is not topologically trivial as was previously believed that opens possibilities of realization of a wealth of topologically nontrivial states in the (MnSb2Te4)·(Sb2Te3)n family.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Phys Chem Lett Year: 2021 Document type: Article Affiliation country: Country of publication:

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Phys Chem Lett Year: 2021 Document type: Article Affiliation country: Country of publication: