English

Quantization of virtual Grothendieck rings and their structure including quantum cluster algebras

Representation Theory 2023-10-11 v3 Quantum Algebra

Abstract

The quantum Grothendieck ring of a certain category of finite-dimensional modules over a quantum loop algebra associated with a complex finite-dimensional simple Lie algebra g\mathfrak{g} has a quantum cluster algebra structure of skew-symmetric type. Partly motivated by a search of a ring corresponding to a quantum cluster algebra of {\em skew-symmetrizable} type, the quantum {\em virtual} Grothendieck ring, denoted by Kq(g)\mathfrak{K}_q(\mathfrak{g}), is recently introduced by Kashiwara--Oh \cite{KO23} as a subring of the quantum torus based on the (q,t)(q,t)-Cartan matrix specialized at q=1q=1. In this paper, we prove that Kq(g)\mathfrak{K}_q(\mathfrak{g}) indeed has a quantum cluster algebra structure of skew-symmetrizable type. This task essentially involves constructing distinguished bases of Kq(g)\mathfrak{K}_q(\mathfrak{g}) that will be used to make cluster variables and generalizing the quantum TT-system associated with Kirillov--Reshetikhin modules to establish a quantum exchange relation of cluster variables. Furthermore, these distinguished bases naturally fit into the paradigm of Kazhdan--Lusztig theory and our study of these bases leads to some conjectures on quantum positivity and qq-commutativity.

Keywords

Cite

@article{arxiv.2304.07246,
  title  = {Quantization of virtual Grothendieck rings and their structure including quantum cluster algebras},
  author = {Il-Seung Jang and Kyu-Hwan Lee and Se-jin Oh},
  journal= {arXiv preprint arXiv:2304.07246},
  year   = {2023}
}

Comments

We corrected typos in Theorem 5.2 and Proposition 5.25