English

Single-crystal investigations on the multiferroic material LiFe(WO$_4$)$_2$

Strongly Correlated Electrons 2021-04-21 v1

Abstract

The crystal and magnetic structure of multiferroic LiFe(WO4_4)2_2 were investigated by temperature and magnetic-field dependent specific heat, susceptibility and neutron diffraction experiments on single crystals. Considering only the two nearest-neighbour magnetic interactions, the system forms a J1J_1, J2J_2 magnetic chain but more extended interactions are sizeable. Two different magnetic phases exhibiting long-range incommensurate order evolve at TN122.2 KT_{\text{N}1}\approx 22.2 \text{ K} and TN219 KT_{\text{N}2}\approx 19 \text{ K}. First, a spin-density wave develops with moments lying in the acac plane. In its multiferroic phase below TN2T_{\text{N}2}, LiFe(WO4_4)2_2 exhibits a spiral arrangement with an additional spin-component along bb. Therefore, the inverse Dzyaloshinskii-Moriya mechanism fully explains the multiferroic behavior in this material. A partially unbalanced multiferroic domain distribution was observed even in the absence of an applied electric field. For both phases only a slight temperature dependence of the incommensurability was observed and there is no commensurate phase emerging at low temperature or at finite magnetic fields up to 6 T6\text{ T}. LiFe(WO4_4)2_2 thus exhibits a simple phase diagram with the typical sequence of transitions for a type-II multiferroic material.

Keywords

Cite

@article{arxiv.2103.14523,
  title  = {Single-crystal investigations on the multiferroic material LiFe(WO$_4$)$_2$},
  author = {S. Biesenkamp and D. Gorkov and D. Brüning and A. Bertin and T. Fröhlich and X. Fabrèges and A. Gukasov and M. Meven and P. Becker and L. Bohatý and T. Lorenz and M. Braden},
  journal= {arXiv preprint arXiv:2103.14523},
  year   = {2021}
}

Comments

This manuscript has been accepted as a regular article in PRB: https://journals.aps.org/prb/accepted/fb07cO25Le41de3ae74211d6e869185cdc06df242