English

Classification of Hopf superalgebras associated with quantum special linear superalgebra at roots of unity using Weyl groupoid

Quantum Algebra 2021-11-12 v3

Abstract

We summarize the definition of the Weyl groupoid using supercategory approach in order to investigate quantum superalgebras at roots of unity. We show how the structure of a Hopf superalgebra on a quantum superalgebra is determined by the quantum Weyl groupoid. The Weyl groupoid of sl(mn)\mathfrak{sl}(m|n) is constructed to this end as some supercategory. We prove that in this case quantum superalgebras associated with Dynkin diagrams are isomorphic as superalgebras. It is shown how these quantum superalgebras considered as Hopf superalgebras are connected via twists and isomorphisms. We explicitly construct these twists using the Lusztig isomorphisms considered as elements of the Weyl quantum groupoid. We build a PBW basis for each quantum superalgebra, and investigate how quantum superalgebras are connected with their classical limits, i. e. Lie superbialgebras. We find explicit multiplicative formulas for universal RR-matrices, describe relations between them for each realization and classify Hopf superalgebras and triangular structures for the quantum superalgebra Uq(sl(mn))U_q(\mathfrak{sl}(m|n)).

Keywords

Cite

@article{arxiv.2006.06610,
  title  = {Classification of Hopf superalgebras associated with quantum special linear superalgebra at roots of unity using Weyl groupoid},
  author = {Alexander Mazurenko and Vladimir A. Stukopin},
  journal= {arXiv preprint arXiv:2006.06610},
  year   = {2021}
}

Comments

This paper has been withdrawn by the authors due to a decision to public it as a separate paper. This decision was made because the article "Classification of Hopf superalgebras ..." generalizes the previous one "Weyl groupoid of quantum ...$ at roots of unity" and contains new results about classification of Hopf superalgebras on quantum structures