English

Effective Field Theory for Layered Quantum Antiferromagnets with Non-Magnetic Impurities

Disordered Systems and Neural Networks 2009-10-31 v2

Abstract

We propose an effective two-dimensional quantum non-linear sigma model combined with classical percolation theory to study the magnetic properties of site diluted layered quantum antiferromagnets like La2_{2}Cu1x_{1-x}Mx_xO4_{4} (M==Zn, Mg). We calculate the staggered magnetization at zero temperature, Ms(x)M_s(x), the magnetic correlation length, ξ(x,T)\xi(x,T), the NMR relaxation rate, 1/T1(x,T)1/T_1(x,T), and the N\'eel temperature, TN(x)T_N(x), in the renormalized classical regime. Due to quantum fluctuations we find a quantum critical point (QCP) at xc0.305x_c \approx 0.305 at lower doping than the two-dimensional percolation threshold xp0.41x_p \approx 0.41. We compare our results with the available experimental data.

Keywords

Cite

@article{arxiv.cond-mat/9903113,
  title  = {Effective Field Theory for Layered Quantum Antiferromagnets with Non-Magnetic Impurities},
  author = {Y. C. Chen and A. H. Castro Neto},
  journal= {arXiv preprint arXiv:cond-mat/9903113},
  year   = {2009}
}

Comments

Final version accepted for publication as a Rapid Communication on Physical Review B. A new discussion on the effect of disorder in layered quantum antiferromagnets is included