English

Two relations that generalize the $q$-Serre relations and the Dolan-Grady relations

Quantum Algebra 2007-05-23 v1 Mathematical Physics Combinatorics math.MP Rings and Algebras Representation Theory

Abstract

We define an algebra on two generators which we call the Tridiagonal algebra, and we consider its irreducible modules. The algebra is defined as follows. Let K denote a field, and let β,γ,γ,ϱ,ϱ\beta, \gamma, \gamma^*, \varrho, \varrho^* denote a sequence of scalars taken from K. The corresponding Tridiagonal algebra TT is the associative K-algebra with 1 generated by two symbols AA, AA^* subject to the relations (i) \lbrack A,A^2A^*-\beta AA^*A + A^*A^2 -\gamma (AA^*+A^*A)- \varrho A^*\rbrack = 0, (ii) \lbrack A^*,A^{*2}A-\beta A^*AA^* + AA^{*2} -\gamma^* (A^*A+AA^*)- \varrho^* A\rbrack = 0, where [r,s]\lbrack r,s\rbrack means rssrrs-sr. We call these relations the Tridiagonal relations. For β=q+q1\beta = q+q^{-1}, γ=γ=0\gamma = \gamma^*=0, ϱ=ϱ=0\varrho=\varrho^*=0, the Tridiagonal relations are the qq-Serre relations. For β=2\beta = 2, γ=γ=0\gamma = \gamma^*=0, ϱ=b2\varrho=b^2, ϱ=b2\varrho^*=b^{*2}, the Tridiagonal relations are the Dolan-Grady relations. In the first part of this paper, we survey what is known about irreducible finite dimensional TT-modules. We focus on how these modules are related to the Leonard pairs recently introduced by the present author, and the more general Tridiagonal pairs recently introduced by Ito, Tanabe, and the present author. In the second part of the paper, we construct an infinite dimensional irreducible TT-module based on the Askey-Wilson polynomials.

Keywords

Cite

@article{arxiv.math/0307016,
  title  = {Two relations that generalize the $q$-Serre relations and the Dolan-Grady relations},
  author = {Paul Terwilliger},
  journal= {arXiv preprint arXiv:math/0307016},
  year   = {2007}
}

Comments

21 pages. Appeared in: Proceedings of the Nagoya 1999 International workshop on physics and combinatorics. Editors A. N. Kirillov, A. Tsuchiya, H. Umemura. pp 377--398, World Scientific Publishing, River Edge, NJ, 2001

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