arXiv · 1404.0991
Magnetic field induced phases in anisotropic triangular antiferromagnets: application to $\mathrm{CuCrO_2}$
Abstract
We introduce a minimal spin model for describing the magnetic properties of $\mathrm{CuCrO_2}$. Our Monte Carlo simulations of this model reveal a rich magnetic field induced phase diagram, which explains the measured field dependence of the electric polarization. The sequence of phase transitions between different mutiferroic states arises from a subtle interplay between spatial and spin anisotropy, magnetic frustration and thermal fluctuations. Our calculations are compared to new measurements up to 92 T.
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Shi-Zeng Lin, Kipton Barros, Eundeok Mun, Jae-Wook Kim, Matthias Frontzek, S. Barilo, S. V. Shiryaev, Vivien S. Zapf, Cristian D. Batista. 2014-06-18. Magnetic field induced phases in anisotropic triangular antiferromagnets: application to $\mathrm{CuCrO_2}$. https://doi.org/10.1103/physrevb.89.220405
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