English

Neutron diffraction in MnSb2O6: Magnetic and structural domains in a helicoidal polar magnet with coupled chiralities

Strongly Correlated Electrons 2022-08-04 v2 Materials Science

Abstract

MnSb2_{2}O6_{6} is based on the structural chiral PP321 space group #150 where the magnetic Mn2+^{2+} moments (S=5/2S=5/2, L0L\approx 0) order antiferromagnetically at TN=12T_\mathrm{N}=12 K. Unlike the related iron based langasite (Ba3_3NbFe3_3Si2_2O14_{14}) where the low temperature magnetism is based on a proper helix characterized by a time-even pseudoscalar `magnetic' chirality, the Mn2+^{2+} ions in MnSb2_{2}O6_{6} order with a cycloidal structure at low temperatures, described instead by a time-even vector `magnetic' polarity. A tilted cycloidal structure has been found [M. Kinoshita et al. Phys. Rev. Lett. 117, 047201 (2016)] to facilitate ferroelectric switching under an applied magnetic field. In this work, we apply polarized and unpolarized neutron diffraction analyzing the magnetic and nuclear structures in MnSb2_{2}O6_{6} with the aim of understanding this magnetoelectric coupling. We find no evidence for a helicoidal magnetic structure with one of the spin envelope axes tilted away from the cycloidal cc-axis. However, on application of a magnetic field \parallel c\vec{c} the spin rotation plane can be tilted, giving rise to a cycloid-helix admixture that evolves towards a distorted helix (zero cycloidal component) for fields great than \approx 2 T. We propose a mechanism for the previously reported ferroelectric switching based on coupled structural and magnetic chiralities requiring only an imbalance of structural chiral domains.

Keywords

Cite

@article{arxiv.2207.10977,
  title  = {Neutron diffraction in MnSb2O6: Magnetic and structural domains in a helicoidal polar magnet with coupled chiralities},
  author = {E. Chan and J. Pásztorová and R. D. Johnson and M. Songvilay and R. A. Downie and J-W. G. Bos and O. Fabelo and C. Ritter and K. Beauvois and Ch. Niedermayer and S. -W. Cheong and N. Qureshi and C. Stock},
  journal= {arXiv preprint arXiv:2207.10977},
  year   = {2022}
}