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Self-organization of topological defects for a triangular-lattice magnetic dots array subject to a perpendicular magnetic field

Published 18 Nov 2014 in cond-mat.mes-hall | (1411.4897v1)

Abstract: The regular array of magnetic particles (magnetic dots) of the form of a two-dimensional triangular lattice in the presence of external magnetic field demonstrates complicated magnetic structures. The magnetic symmetry of the ground state for such a system is lower than that for the underlying lattice. Long range dipole-dipole interaction leads to a specific antiferromagnetic order in small fields, whereas a set of linear topological defects appears with the growth of the magnetic field. Self-organization of such defects determines the magnetization process for a system within a wide range of external magnetic fields.

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