arXiv · 1602.02064
Skyrmions in thin films with easy-plane magnetocrystalline anisotropy
Abstract
We demonstrate that chiral skyrmionic magnetization configurations can be found as the minimum energy state in B20 thin film materials with easy-plane magnetocrystalline anisotropy with an applied magnetic field perpendicular to the film plane. Our observations contradict results from prior analytical work, but are compatible with recent experimental investigations. The size of the observed skyrmions increases with the easy-plane magnetocrystalline anisotropy. We use a full micromagnetic model including demagnetization and a three-dimensional geometry to find local energy minimum (metastable) magnetization configurations using numerical damped time integration. We explore the phase space of the system and start simulations from a variety of initial magnetization configurations to present a systematic overview of anisotropy and magnetic field parameters for which skyrmions are metastable and global energy minimum (stable) states.
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Mark Vousden, Maximilian Albert, Marijan Beg, Marc-Antonio Bisotti, Rebecca Carey, Dmitri Chernyshenko, David Cortés-Ortuño, Weiwei Wang, Ondrej Hovorka, Christopher H. Marrows, Hans Fangohr. 2016-02-05. Skyrmions in thin films with easy-plane magnetocrystalline anisotropy. https://doi.org/10.1063/1.4945262
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