Spin textures in chiral magnetic monolayers with suppressed nearest-neighbor exchange

Raí M. Menezes, Clécio C. de Souza Silva, and Milorad V. Milošević
Phys. Rev. B 101, 214429 – Published 18 June 2020
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Abstract

High tunability of two-dimensional magnetic materials (by strain, gating, heterostructuring, or otherwise) provides unique conditions for studying versatile magnetic properties and controlling emergent magnetic phases. Expanding the scope of achievable magnetic phenomena in such materials is important for both fundamental and technological advances. Here we perform atomistic spin-dynamics simulations to explore the (chiral) magnetic phases of atomic monolayers in the limit of suppressed first-neighbors exchange interaction. We report the rich phase diagram of exotic magnetic configurations, obtained for both square and honeycomb lattice symmetries, comprising coexistence of ferromagnetic and antiferromagnetic spin cycloids, as well as multiple types of magnetic skyrmions. We perform a minimum-energy path analysis for the skyrmion collapse to evaluate the stability of such topological objects and reveal that magnetic monolayers could be good candidates to host the antiferromagnetic skyrmions that are experimentally evasive to date.

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  • Received 16 March 2020
  • Revised 5 June 2020
  • Accepted 5 June 2020

DOI:https://doi.org/10.1103/PhysRevB.101.214429

©2020 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

Raí M. Menezes1,2,3, Clécio C. de Souza Silva3, and Milorad V. Milošević1,2,*

  • 1Department of Physics, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium
  • 2NANOlab Center of Excellence, University of Antwerp, Antwerp, Belgium
  • 3Departamento de Física, Universidade Federal de Pernambuco, Cidade Universitária, 50670-901, Recife-PE, Brazil

  • *milorad.milosevic@uantwerpen.be

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Issue

Vol. 101, Iss. 21 — 1 June 2020

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