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Engineering multiferroism in CaMnO₃

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arxiv 0811.2344 v2 pith:QXIHTKTZ submitted 2008-11-14 cond-mat.mtrl-sci

Engineering multiferroism in CaMnO₃

classification cond-mat.mtrl-sci
keywords camnoinstabilityantiferrodistortiveengineeringferroelectricityalthoughbelievecalculations
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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From first-principles calculations, we investigate the structural instabilities of CaMnO$_3$. We point out that, on top of a strong antiferrodistortive instability responsible for its orthorhombic ground-state, the cubic perovskite structure of CaMnO$_3$ also exhibit a weak ferroelectric instability. Although ferroelectricity is suppressed by antiferrodistortive oxygen motions, we show that it can be favored using strain or chemical engineering in order to make CaMnO$_3$ multiferroic. We finally highlight that the FE instability of CaMnO$_3$ is Mn-dominated. This illustrates that, contrary to the common believe, ferroelectricity and magnetism are not necessarily exclusive but can be driven by the same cation.

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