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Meron, skyrmion, and vortex crystals in centrosymmetric tetragonal magnets

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115 Scopus citations

Abstract

The recent experimental confirmation of a transformation between meron and skyrmion topological spin textures in the chiral magnet Co8Zn9Mn3 [S.-Z. Lin et al., Phys. Rev. B 91, 224407 (2015)PRBMDO1098-012110.1103/PhysRevB.91.224407; X. Z. Yu et al., Nature 564, 95 (2018)10.1038/s41586-018-0745-3] confirms that the skyrmion crystals discovered in 2009 [S. Mühlbauer et al., Science 323, 915 (2009)10.1126/science.1166767] are just the tip of the iceberg. Crystals of topological textures, including skyrmions, merons, vortices, and monopoles, can be stabilized by combining simple physical ingredients, such as lattice symmetry, frustration, and spin anisotropy. The current challenge is to find the combinations of these ingredients that produce specific topological spin textures. Here we report a simple mechanism for the stabilization of meron, skyrmion, and vortex crystals in centrosymmetric tetragonal magnets. In particular, the meron/skyrmion crystals can form even in absence of magnetic field. The application of magnetic field leads to a rich variety of topological spin textures that survive in the long wavelength limit of the theory. When conduction electrons are coupled to the spins, these topological spin textures twist the electronic wave functions to induce Chern insulators and Weyl semimetals for specific band filling fractions.
Original languageEnglish
Article number104408
JournalPhysical Review B - Condensed Matter and Materials Physics
Volume103
Issue number10
DOIs
StatePublished - Mar 4 2021

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