The commensurate phase of multiferroic HoMn2O5 studied by X-ray magnetic scattering
arXiv:0803.3779 · doi:10.1103/PhysRevB.77.172408
Abstract
The commensurate phase of multiferroic HoMn2O5 was studied by X-ray magnetic scattering, both off resonance and in resonant conditions at the Ho-L3 edge. Below 40 K, magnetic ordering at the Ho sites is induced by the main Mn magnetic order parameter, and its temperature dependence is well accounted for by a simple Curie-Weiss susceptibility model. A lattice distortion of periodicity twice that of the magnetic order is also evidenced. Azimuthal scans confirm the model of the magnetic structure recently refined from neutron diffraction data for both Mn and Ho sites, indicating that the two sublattices interact via magnetic superexchange.
References in corpus (5)
- Magnetically driven ferroelectric order in NiVO
- Direct transition from a disordered to a multiferroic phase on a triangular lattice
- Enhanced ferroelectric polarization by induced Dy spin-order in multiferroic DyMnO3
- Non-resonant and Resonant X-ray Scattering Studies on Multiferroic TbMn2O5
- Symmetry constraints on the electrical polarization in novel multiferroic materials
Cited by in corpus (6)
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- Order Parameters and Phase Diagrams of Multiferroics
- Noncentrosymmetric Commensurate Magnetic Ordering of Multiferroic ErMn2O5
- The Magnetic Structure of DyMn2O5 Determined by Resonant X-ray Scattering