English

Coupled Ladders in a Magnetic Field

Strongly Correlated Electrons 2009-10-31 v2

Abstract

We investigate the phase transitions in two-leg ladders systems in the incommensurate phase, for which the gap is destroyed by a magnetic field (hc1<hh_{c1}< h) and the ladder is not yet totally saturated (h<hc2h < h_{c2}). We compute quantitatively the correlation functions as a function of the magnetic field for an isolated strong coupling ladder JJJ_\perp \gg J_\parallel and use it to study the phase transition occuring in a three dimensional array of antiferromagnetically coupled ladders. The three dimensional ordering is in the universality class of Bose condensation of hard core bosons. We compute the critical temperature Tc(h)T_c(h) as well as various physical quantities such as the NMR relaxations rate. TcT_c has an unusual camel-like shape with a local minimum at h=(hc1+hc2)/2h=(h_{c1}+h_{c2})/2 and behaves as Tc(hhc1)2/3T_c \sim (h-h_{c1})^{2/3} for hhc1h\sim h_{c1}. We discuss the experimental consequences for compounds such as Cu_2(C_5H_{12}N_2)_2Cl_4

Keywords

Cite

@article{arxiv.cond-mat/9810219,
  title  = {Coupled Ladders in a Magnetic Field},
  author = {T. Giamarchi and A. M. Tsvelik},
  journal= {arXiv preprint arXiv:cond-mat/9810219},
  year   = {2009}
}

Comments

11 pages; some misprints corrected + one reference added; to appear in PRB

R2 v1 2026-07-22T12:07:12.716Z