English

Magnetic structure and multiferroicity of Sc-substituted hexagonal YbFeO$_3$

Materials Science 2021-05-20 v1

Abstract

Hexagonal rare-earth ferrite RFeO3_3 family represents a unique class of multiferroics exhibiting weak ferromagnetism, and a strong coupling between magnetism and structural trimerization is predicted. However, the hexagonal structure for RFeO3_3 remains metastable in conventional condition. We have succeeded in stabilizing the hexagonal structure of polycrystalline YbFeO3_3 by partial Sc substitution of Yb. Using bulk magnetometry and neutron diffraction, we find that Yb0.42_{0.42}Sc0.58_{0.58}FeO3_3 orders into a canted antiferromagnetic state with the Neel temperature TNT_N ~ 165 K, below which the Fe3+Fe^{3+} moments form the triangular configuration in the abab-plane and their in-plane projections are parallel to the [100] axis, consistent with magnetic space group PP63_{3}cmc'm'. It is determined that the spin-canting is aligned along the cc-axis, giving rise to the weak ferromagnetism. Furthermore, the Fe3+Fe^{3+} moments reorient toward a new direction below reorientation temperature TRT_R ~ 40 K, satisfying magnetic subgroup PP63_{3}, while the Yb3+Yb^{3+} moments order independently and ferrimagnetically along the cc-axis at the characteristic temperature TYbT_{Yb} ~ 15 K. Interestingly, reproducible modulation of electric polarization induced by magnetic field at low temperature is achieved, suggesting that the delicate structural distortion associated with two-up/one-down buckling of the Yb/Sc-planes and tilting of the FeO5_5 bipyramids may mediate the coupling between ferroelectric and magnetic orders under magnetic field. The present work represents a substantial progress to search for high-temperature multiferroics in hexagonal ferrites and related materials.

Keywords

Cite

@article{arxiv.2105.08931,
  title  = {Magnetic structure and multiferroicity of Sc-substituted hexagonal YbFeO$_3$},
  author = {Y. S. Tang and S. M. Wang and L. Lin and V. Ovidiu Garlea and Tao Zou and S. H. Zheng and H. -M. Zhang and J. T. Zhou and Z. L. Luo and Z. B. Yan and S. Dong and T. Charlton and J. -M. Liu},
  journal= {arXiv preprint arXiv:2105.08931},
  year   = {2021}
}