English

Small-scale phase separation in doped anisotropic antiferromagnets

Strongly Correlated Electrons 2009-11-11 v1

Abstract

We analyze the possibility of the nanoscale phase separation manifesting itself in the formation of ferromagnetic (FM) polarons (FM droplets) in the general situation of doped anisotropic three- and two-dimensional antiferromagnets. In these cases, we calculate the shape of the most energetically favorable droplets. We show that the binding energy and the volume of a FM droplet in the three-dimensional (3D) case depend only upon two universal parameters Jˉ=(Jx+Jy+Jz)S2\bar{J} =(J_x + J_y + J_z)S^2 and teff=(txtytz)1/3t_{eff} =(t_xt_yt_z)^{1/3}, where Jˉ\bar{J} and tefft_{eff} are effective antiferromagnetic (AFM) exchange and hopping integrals, respectively. In the two-dimensional (2D) case, these parameters have the form Jˉ=(Jx+Jy)S2\bar{J} =(J_x + J_y)S^2 and teff=(txty)1/2t_{eff} =(t_xt_y)^{1/2}. The most favorable shape of a ferromagnetic droplet corresponds to an ellipse in the 2D case and to an ellipsoid in the 3D case.

Keywords

Cite

@article{arxiv.cond-mat/0607637,
  title  = {Small-scale phase separation in doped anisotropic antiferromagnets},
  author = {M. Yu. Kagan and K. I. Kugel and A. L. Rakhmanov and K. S. Pazhitnykh},
  journal= {arXiv preprint arXiv:cond-mat/0607637},
  year   = {2009}
}

Comments

6 pages, 1 figure, RevTeX

R2 v1 2026-07-22T11:35:07.315Z