English

Lattice and spin dynamics in a low-symmetry antiferromagnet NiWO$_4$

Materials Science 2017-07-26 v1

Abstract

Lattice and magnetic dynamics of NiWO4_4 single crystals were studied with the use of polarized Raman spectroscopy in a wide temperature range of 10-300 K including the antiferromagnetic ordering temperature TNT_N=62 K. Static magnetic measurements were used for characterizing the single crystals. All Raman-active phonons predicted by the group theory were observed and characterized. Magnetic symmetry analysis was used to determine possible magnetic space groups for NiWO4_4 which can be also applied to any other isostructural crystal with the same magnetic propagation vector k=(1/2,0,0). Though the magnetic structure of NiWO4_4 is relatively simple, a rich set of narrow and broad magnetic excitations with different polarization properties and temperature behavior in the very broad frequency range of 10-200 cm1^{-1} was observed, with some modes surviving at temperatures much higher than TNT_N up to 220 K. Part of the magnetic excitations was identified as acoustic and optical spin-wave branches which allow us to construct exchange structure and estimate exchange and anisotropy constants with the use of linear spin-wave theory. Since the magnetic structure can be described as exchange-coupled AFM chains of S=1S=1 ions, previously unobserved magnetic excitation at 24 cm1^{-1} is tentatively assigned to a Haldane gap mode.

Keywords

Cite

@article{arxiv.1705.11137,
  title  = {Lattice and spin dynamics in a low-symmetry antiferromagnet NiWO$_4$},
  author = {M. A. Prosnikov and V. Yu. Davydov and A. N. Smirnov and M. P. Volkov and R. V. Pisarev and P. Becker and L. Bohatý},
  journal= {arXiv preprint arXiv:1705.11137},
  year   = {2017}
}