arXiv · 1811.07182
Ferroelectricity in the 1 $μ$C cm$^{-2}$ range induced by canted antiferromagnetism in (LaMn$_{3}$)Mn$_{4}$O$_{12}$
Abstract
Pyroelectric current and magnetoelectric coupling measurements on polycrystalline samples of the quadruple perovskite (LaMn$_{3}$)Mn$_{4}$O$_{12}$ give evidence of ferroelectricity driven by the antiferromagnetic ordering of the $B$-site Mn$^{3+}$ ions at $T_{N,B}$=78 K with record values of remnant electric polarization up to $P$=0.56 $μ$C cm$^{-2}$. X-ray diffraction measurements indicates an anomalous behavior of the monoclinic $β$ angle at $T_{N,B}$, which suggests that $P$ lies in the $ac$-plane, where the moments are collinear, so we conclude that exchange striction is the mechanism of spin-driven ferroelectricity. Polarization values $\sim$3 $μ$C cm$^{-2}$ are expected in single crystals, which would open the avenue towards practical multiferroic applications.
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A. Gauzzi, F. Milton, V. Pascotto Gastaldo, M. Verseils, A. Gualdi, D. Dreifus, Y. Klein, D. Garcia, A. J. A de Oliveira, P. Bordet, E. Gilioli. 2018-11-17. Ferroelectricity in the 1 $μ$C cm$^{-2}$ range induced by canted antiferromagnetism in (LaMn$_{3}$)Mn$_{4}$O$_{12}$. https://doi.org/10.1063/1.5108640
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