English

Alternating-Spin Ladders in a Magnetic Field: New Magnetization Plateaux

Strongly Correlated Electrons 2009-10-31 v1

Abstract

We study numerically the formation of magnetization plateaux with the Lanczos method in 2-leg ladders with mixed spins of magnitudes (S1,S2)=(1,1/2)(S_1,S_2)=(1,1/2) located at alternating positions along the ladder and with dimerization γ\gamma. For interchain coupling J>0J'>0 and γ=0\gamma=0, we find normalized plateaux at m=1/3m=1/3 starting at zero field and m=1m=1 (saturation), while when γ0\gamma \ne 0 is columnar, another extra plateau at m=2/3m=2/3 shows up. For J<0J'<0, when γ<γc(J)\gamma<\gamma_c(J') we find no plateau while for γ>γc(J)\gamma>\gamma_c(J') we find four plateaux at m=0,1/3,2/3,1m=0,1/3,2/3,1. We also apply several approximate analytical methods (Spin Wave Theory, Low-Energy Effective Hamiltonians and Bosonization) to understand these findings and to conjeture the behaviour of ferrimagnetic ladders with a bigger number of legs.

Keywords

Cite

@article{arxiv.cond-mat/0012278,
  title  = {Alternating-Spin Ladders in a Magnetic Field: New Magnetization Plateaux},
  author = {A. Langari and M. A. Martin-Delgado},
  journal= {arXiv preprint arXiv:cond-mat/0012278},
  year   = {2009}
}

Comments

REVTEX file, 7 pages, 6 eps Figures