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Critical behaviour of spin-s Heisenberg antiferromagnetic chains: analytic and numerical results

Journal of Physics A Mathematical and General · 1989 · Vol. 22(5) · pp. 511–529
Ian AffleckDoron GepnerH. J. SchulzTimothy Ziman

Abstract

A general phase diagram for isotropic antiferromagnetic chains has been proposed recently, using conformal field theory. This is developed further to predict the spectrum of finite chains, including logarithmic corrections. These predictions are tested against Bethe ansatz and exact diagonalisation results for various Hamiltonians with s=1/2, 1 and 3/2. Logarithmic corrections to correlation functions and the scaling of gaps for infinite systems are also given.

Physics of Superconductivity and MagnetismTheoretical and Computational PhysicsQuantum many-body systemsBethe ansatzAntiferromagnetismLogarithmScalingIsotropyAnsatzSpin (aerodynamics)Phase diagramHeisenberg modelPhysics

Funding

  • Aspen Center for Physics
  • Natural Sciences and Engineering Research Council of Canada
  • Division of Materials Research
Citations
432
FWCI
2.63
field-weighted impact
References
32
Percentile
91%
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References
What is the spin of a spin wave?
Physics Letters A · 1981 · 684 citations
Current algebra and Wess-Zumino model in two dimensions
Nuclear Physics B · 1984 · 1,735 citations
Operator content of two-dimensional conformally invariant theories
Nuclear Physics B · 1986 · 1,864 citations
Non-abelian bosonization in two dimensions
Communications in Mathematical Physics · 1984 · 2,278 citations
Conformal invariance and universality in finite-size scaling
Journal of Physics A Mathematical and General · 1984 · 721 citations
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