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JOURNALS // Zapiski Nauchnykh Seminarov POMI // Archive

Zap. Nauchn. Sem. POMI, 2015 Volume 433, Pages 156–185 (Mi znsl6131)

This article is cited in 4 papers

Matrix factorization for solutions of the Yang–Baxter equation

S. E. Derkachova, D. I. Chicherinb

a St. Petersburg Department of Steklov Mathematical Institute of Russian Academy of Sciences, St. Petersburg, Russia
b Laboratoire d'Annecy-le-Vieux de Physique Théorique, LAPTH, CNRS, UMR 5108, associée á l'Université de Savoie, B.P. 110, F-74941 Annecy-le-Vieux, France

Abstract: We study solutions of the Yang–Baxter equation on a tensor product of an arbitrary finite-dimensional and an arbitrary infinite-dimensional representations of the rank one symmetry algebra. We consider the cases of the Lie algebra $sl_2$, the modular double (trigonometric deformation) and the Sklyanin algebra (elliptic deformation). The solutions are matrices with operator entries. The matrix elements are differential operators in the case of $sl_2$, finite-difference operators with trigonometric coefficients in the case of the modular double or finite-difference operators with coefficients constructed out of Jacobi theta functions in the case of the Sklyanin algebra. We find a new factorized form of the rational, trigonometric, and elliptic solutions, which drastically simplifies them. We show that they are products of several simply organized matrices and obtain for them explicit formulae.

Key words and phrases: Yang–Baxter equation, $\mathrm R$-matrix, quantum integrable systems, Sklyanin algebra.

UDC: 517.9

Received: 02.03.2015


 English version:
Journal of Mathematical Sciences (New York), 2016, 213:5, 723–742

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