English

Dynamics and relaxation in spin nematics

Strongly Correlated Electrons 2013-06-17 v2 Quantum Gases

Abstract

We study dynamics and relaxation of elementary excitations (magnons) in the spin nematic (quadrupole ordered) phase of S=1 magnets. We develop a general phenomenological theory of spin dynamics and relaxation for spin-1 systems. Results of the phenomenological approach are compared to those obtained by microscopic calculations for the specific S=1 model with isotropic bilinear and biquadratic exchange interactions. This model exhibits a rich behavior depending on the ratio of bilinear and biquadratic exchange constants, including several points with an enhanced symmetry. It is shown that symmetry plays an important role in relaxation. Particularly, at the SU(3) ferromagnetic point the magnon damping Γ\Gamma depends on its wavevector k as Γk4\Gamma\propto k^{4}, while a deviation from the high-symmetry point changes the behavior of the leading term to Γk2\Gamma\propto k^{2}. We point out a similarity between the behavior of magnon relaxation in spin nematics to that in an isotropic ferromagnet.

Keywords

Cite

@article{arxiv.1303.1194,
  title  = {Dynamics and relaxation in spin nematics},
  author = {V. G. Bar'yakhtar and V. I. Butrim and A. K. Kolezhuk and B. A. Ivanov},
  journal= {arXiv preprint arXiv:1303.1194},
  year   = {2013}
}

Comments

the final published version

R2 v1 2026-06-21T23:37:13.554Z