English

Algebraic Bethe ansatz for the gl(1$|$2) generalized model II: the three gradings

Statistical Mechanics 2017-08-16 v2

Abstract

The algebraic Bethe ansatz can be performed rather abstractly for whole classes of models sharing the same RR-matrix, the only prerequisite being the existence of an appropriate pseudo vacuum state. Here we perform the algebraic Bethe ansatz for all models with 9×99 \times 9, rational, gl(1|2)-invariant RR-matrix and all three possibilities of choosing the grading. Our Bethe ansatz solution applies, for instance, to the supersymmetric t-J model, the supersymmetric UU model and a number of interesting impurity models. It may be extended to obtain the quantum transfer matrix spectrum for this class of models. The properties of a specific model enter the Bethe ansatz solution (i.e. the expression for the transfer matrix eigenvalue and the Bethe ansatz equations) through the three pseudo vacuum eigenvalues of the diagonal elements of the monodromy matrix which in this context are called the parameters of the model.

Keywords

Cite

@article{arxiv.cond-mat/0309135,
  title  = {Algebraic Bethe ansatz for the gl(1$|$2) generalized model II: the three gradings},
  author = {Frank Göhmann and Alexander Seel},
  journal= {arXiv preprint arXiv:cond-mat/0309135},
  year   = {2017}
}

Comments

paragraph added in section 3, reference added, version to appear in J.Phys. A