Topological spin waves in the atomic-scale magnetic skyrmion crystal
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2016Metadata
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Roldán Molina, A.
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Topological spin waves in the atomic-scale magnetic skyrmion crystal
Abstract
We study the spin waves of the triangular skyrmion crystal that emerges in a two-dimensional spin lattice model as a result of the competition between Heisenberg exchange, Dzyalonshinkii-Moriya interactions, Zeeman coupling and uniaxial anisotropy. The calculated spin wave bands have a finite Berry curvature that, in some cases, leads to non-zero Chern numbers, making this system topologically distinct from conventional magnonic systems. We compute the edge spin-waves, expected from the bulk-boundary correspondence principle, and show that they are chiral, which makes them immune to elastic backscattering. Our results illustrate how topological phases can occur in self-generated emergent superlattices at the mesoscale.
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1150072
Fondo de Innovacion para la Competitividad-MINECON
ICM P10-061-F
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ACT 1117
Financiamiento Basal para Centros Cientificos y Tecnologicos de Excelencia
FB 0807
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New J. Phys. 18 (2016) 045015
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