Reversing ferroelectric polarization in multiferroic DyMn2O5 by nonmagnetic Al substitution of Mn
arXiv:1403.5136 · doi:10.1063/1.4891979
Abstract
The multiferroic RMn2O5 family, where R is rare-earth ion or Y, exhibits rich physics of multiferroicity which has not yet well understood, noting that multiferroicity is receiving attentions for promising application potentials. DyMn2O5 is a representative member of this family. The ferroelectric polarization in DyMn2O5 is claimed to have two anti-parallel components: one (PDM) from the symmetric exchange striction between the Dy3+-Mn4+ interactions and the other (PMM) from the symmetric exchange striction between the Mn3+-Mn4+ interactions. We investigate the evolutions of the two components upon a partial substitution of Mn3+ by nonmagnetic Al3+ in order to tailor the Mn-Mn interactions and then to modulate component PMM in DyMn2-x/2Alx/2O5. It is revealed that the ferroelectric polarization can be successfully reversed by the Al-substitution via substantially suppressing the Mn3+-Mn4+ interactions and thus the PMM. The Dy3+-Mn4+ interactions and the polarization component PDM can sustain against the substitution until a level as high as x=0.2. In addition, the independent Dy spin ordering is shifted remarkably down to an extremely low temperature due to the Al3+ substitution. The present work not only confirms the existence of the two anti-parallel polarization components but also unveils the possibility of tailoring them independently.
30 pages, 11 figures
References in corpus (10)
- Enhanced ferroelectric polarization by induced Dy spin-order in multiferroic DyMnO3
- A Neutron diffraction study of multiferroics RMn2O5
- Ferroelectricity driven by the non-centrosymmetric magnetic ordering in multiferroic TbMn_2O_5: a first-principles study
- Electromagnons in multiferroic RMn2O5 compounds and their microscopic origin
- Electronic correlations decimate the ferroelectric polarization of multiferroic HoMn2O5
- Pressure induced enhancement of ferroelectricity in multiferroic MnO(=Tb,Dy, and Ho)
- Complex Spin Structures and Origin of the Magneto-Electric Coupling in YMn2O5
- An x-ray resonant diffraction study of multiferroic DyMn2O5
- The Magnetic Structure of DyMn2O5 Determined by Resonant X-ray Scattering
- Magnetically induced electric polarization reversal in multiferroic TbMnO: Terbium spin reorientation studied by resonant x-ray diffraction