English

Magneto-elastic interaction in cubic helimagnets with B20 structure

Strongly Correlated Electrons 2009-11-13 v1

Abstract

The magneto-elastic interaction in cubic helimagnets with B20 symmetry is considered. It is shown that this interaction is responsible for negative contribution to the square of the spin-wave gap Δ\Delta which is alone has to disrupt assumed helical structure. It is suggested that competition between positive part of ΔI2\Delta^2_I which stems from magnon-magnon interaction and its negative magneto-elastic part leads to the quantum phase transition observed at high pressure in MnSiMn Si and FeGeFe Ge. This transition has to occur when Δ2=0\Delta^2=0. For MnSiMn Si from rough estimations at ambient pressure both parts ΔI\Delta_I and ΔME|\Delta_{ME}| are comparable with the experimentally observed gap. The magneto-elastic interaction is responsible also for 2\mk2\m k modulation of the lattice where \mk\m k is the helix wave-vector and contribution to the magnetic anisotropy. Experimental observation by xx-ray and neutron scattering the lattice modulation allows determine the strength of anisotropic part of the magneto-elastic interaction responsible for above phenomena and the lattice helicity.

Keywords

Cite

@article{arxiv.0804.1678,
  title  = {Magneto-elastic interaction in cubic helimagnets with B20 structure},
  author = {S. V. Maleyev},
  journal= {arXiv preprint arXiv:0804.1678},
  year   = {2009}
}
R2 v1 2026-06-21T10:29:35.378Z