English

Momentum-dependent light scattering in a 2D Heisenberg antiferromagnet

Strongly Correlated Electrons 2007-08-09 v1

Abstract

Motivated by the achievements of the XX-ray scattering technique, we analyzed the profile of the light scattering intensity R(q,ω)R(q, \omega) at a finite qq in a 2D Heisenberg antiferromagnet. Previous Raman scattering studies at q=0q=0 identified the two-magnon peak in B1gB_{1g} scattering geometry. We found that the B1gB_{1g} peak disperses downwards at a finite qq, and its intensity increases, reaching its maximum at q=q0=(0,π)q= q_0 = (0, \pi) and symmetry related points. In addition, the intensity in the A1gA_{1g} geometry becomes non-zero at a finite qq, and also displays a two-magnon peak which gains strength and disperses to larger frequencies with increasing qq, and reaches its highest intensity at q0q_0. We found that the profile of R(q0,ω)R(q_0, \omega) is equivalent in A1gA_{1g} and B1gB_{1g} geometries.

Keywords

Cite

@article{arxiv.cond-mat/0609002,
  title  = {Momentum-dependent light scattering in a 2D Heisenberg antiferromagnet},
  author = {A. Donkov and A. V. Chubukov},
  journal= {arXiv preprint arXiv:cond-mat/0609002},
  year   = {2007}
}

Comments

5 pages, 4 figures