English

Spin-wave contributions to nuclear magnetic relaxation in magnetic metals

Strongly Correlated Electrons 2009-10-31 v3

Abstract

The longitudinal and transverse nuclear magnetic relaxation rates 1/T1(T)1/T_1(T) and 1/T2(T)1/T_2(T) are calculated for three- and two-dimensional (3D and 2D) metallic ferro- and antiferromagnets (FM and AFM) with localized magnetic moments in the spin-wave temperature region. The contribution of the one-magnon decay processes is strongly enhanced in comparison with the standard TT-linear Korringa term, especially for the FM case. For the 3D AFM case this contribution diverges logarithmically, the divergence being cut at the magnon gap ω0\omega_0 due to magnetic anisotropy, and for the 2D AFM case as ω01\omega_0^{-1}. The electron-magnon scattering processes yield T2ln(T/ω0)T^2\ln (T/\omega_0) and T2/ω01/2T^2/\omega_0^{1/2}-terms in 1/T11/T_1 for the 3D AFM and 2D FM cases, respectively. The two-magnon (``Raman'') contributions are investigated and demonstrated to be large in the 2D FM case. Peculiarities of the isotropic 2D limit (where the correlation length is very large) are analyzed.

Keywords

Cite

@article{arxiv.cond-mat/9904384,
  title  = {Spin-wave contributions to nuclear magnetic relaxation in magnetic metals},
  author = {V. Yu. Irkhin and M. I. Katsnelson},
  journal= {arXiv preprint arXiv:cond-mat/9904384},
  year   = {2009}
}

Comments

10 pages, RevTeX