Control of the magnetic phase coexistence in NdFe(BO) by electric fields
arXiv:1504.03848 · doi:10.1103/PhysRevB.94.054421
Abstract
We present a resonant x-ray diffraction study of the magnetic order in NdFe(BO) and its coupling to applied electric fields. Our high-resolution measurements reveal A coexistence of two different magnetic phases, which can be triggered effectively by external electric fields. More in detail, the volume fraction of the collinear magnetic phase is found to strongly increase at the expense of helically ordered regions when an electric field is applied. These results confirm that the collinear magnetic phase is responsible for the ferroelectric polarization of NdFe(BO) and, more importantly, demonstrate that magnetic phase coexistence provides an alternative route towards materials with a strong magnetoelectric response.
5 pages, 3 figures
References in corpus (7)
- Simultaneous Antiferromagnetic Fe3+ and Nd3+ Ordering in NdFe3(11BO3)4
- Disentangling multipole resonances through a full x-ray polarization analysis
- Electric field switching of antiferromagnetic domains in YMn2O5: a probe of the multiferroic mechanism
- Manipulating the magnetic structure by electric fields in multiferroic ErMn2O5
- Non-Resonant X-ray Magnetic Scattering on Rare-Earth Iron Borates RFe(BO)
- Magnetic frustration, phase competition and the magneto-electric effect in NdFe3(BO3)4
- Determination of magnetic order of the rare-earth ions in multiferroic TbMn2O5