Dynamics and hysteresis in square lattice artificial spin ice

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Abstract

Dynamical effects under geometrical frustration are considered in a model for artificial spin ice on a square lattice in two dimensions. Each island of the spin ice has a three-component Heisenberg-like dipole moment subject to shape anisotropies that influence its direction. The model has real dynamics, including rotation of the magnetic degrees of freedom, going beyond the Isingtype models of spin ice. The dynamics is studied using a Langevin equation solved via a second-order Heun algorithm. Thermodynamic properties such as the specific heat are presented for different couplings. A peak in specific heat is related to a type of melting-like phase transition present in the model. Hysteresis in an applied magnetic field is calculated for model parameters where the system is able to reach thermodynamic equilibrium. © IOP Publishing and Deutsche Physikalische Gesellschaft.

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Wysin, G. M., Moura-Melo, W. A., Mól, L. A. S., & Pereira, A. R. (2013). Dynamics and hysteresis in square lattice artificial spin ice. New Journal of Physics, 15. https://doi.org/10.1088/1367-2630/15/4/045029

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