English

Magnetism and N\'{e}el skyrmion dynamics in GaV$_{4}$S$_{8-y}$Se$_{y}$

Strongly Correlated Electrons 2020-07-08 v2

Abstract

We present an investigation of the influence of low-levels of chemical substitution on the magnetic ground state and N{\' e}el skyrmion lattice (SkL) state in GaV4_4S8y_{8-y}Sey_y, where y=0,0.1,7.9y =0, 0.1, 7.9, and 88. Muon-spin spectroscopy (μ\muSR) measurements on y=0y=0 and 0.1 materials reveal the magnetic ground state consists of microscopically coexisting incommensurate cycloidal and ferromagnetic environments, while chemical substitution leads to the growth of localized regions of increased spin density. μ\muSR measurements of emergent low-frequency skyrmion dynamics show that the SkL exists under low-levels of substitution at both ends of the series. Skyrmionic excitations persist to temperatures below the equilibrium SkL in substituted samples, suggesting the presence of skyrmion precursors over a wide range of temperatures.

Keywords

Cite

@article{arxiv.2003.08682,
  title  = {Magnetism and N\'{e}el skyrmion dynamics in GaV$_{4}$S$_{8-y}$Se$_{y}$},
  author = {T. J. Hicken and S. J. R. Holt and K. J. A. Franke and Z. Hawkhead and A. Štefančič and M. N. Wilson and M. Gomilšek and B. M. Huddart and S. J. Clark and M. R. Lees and F. L. Pratt and S. J. Blundell and G. Balakrishnan and T. Lancaster},
  journal= {arXiv preprint arXiv:2003.08682},
  year   = {2020}
}

Comments

6 pages, 4 figures