4f Spin Driven Ferroelectric-Ferromagnetic Multiferroicity In Prmn2o5 Under A Magnetic Field

S. Chattopadhyay, V Baledent, S. K. Panda,Sh Yamamoto, F. Duc, T. Herrmannsdoerfer, M. Uhlarz, T. Gottschall, O. Mathon,Z. Wang, C. Strohm, M. Greenblatt, P. Foury-Leylekian, J. Wosnitza

Physical Review B(2020)

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摘要
In contrast to all other members of the RMn2O5 family with nonzero 4f electrons (R = Nd to Lu), PrMn2O5 does not show any spin driven ferroelectricity in the magnetically ordered phase. By means of high-field electric polarization measurements up to 45 T, we have found that this exceptional candidate undergoes a spin driven multiferroic phase under magnetic field. X-ray magnetic circular dichroism studies up to 30 T at the Pr L-2 edge show that this ferroelectricity originates from and directly couples to the ferromagnetic component of the Pr3+ spins. Experimental observations along with our generalized gradient-approximation + U calculations reveal that this exotic ferroelectric-ferromagnetic combination stabilizes through the exchange-striction mechanism solely driven by a 3d-4f-type coupling, as opposed to the other RMn2O5 members with 3d-3d driven ferroelectricantiferromagnetic-type conventional type-II multiferroicity.
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