Monoidal categorification of cluster algebras (merged version)
Abstract
We prove that the quantum cluster algebra structure of a unipotent quantum coordinate ring , associated with a symmetric Kac-Moody algebra and its Weyl group element , admits a monoidal categorification via the representations of symmetric Khovanov-Lauda- Rouquier algebras. In order to achieve this goal, we give a formulation of monoidal categorifications of quantum cluster algebras and provide a criterion for a monoidal category of finite-dimensional graded -modules to become a monoidal categorification, where is a symmetric Khovanov-Lauda-Rouquier algebra. Roughly speaking, this criterion asserts that a quantum monoidal seed can be mutated successively in all the directions, once the first-step mutations are possible. Then, we show the existence of a quantum monoidal seed of which admits the first-step mutations in all the directions. As a consequence, we prove the conjecture that any cluster monomial is a member of the upper global basis up to a power of . In the course of our investigation, we also give a proof of a conjecture of Leclerc on the product of upper global basis elements.
Cite
@article{arxiv.1801.05145,
title = {Monoidal categorification of cluster algebras (merged version)},
author = {Seok-Jin Kang and Masaki Kashiwara and Myungho Kim and Se-jin Oh},
journal= {arXiv preprint arXiv:1801.05145},
year = {2018}
}
Comments
91pages. This is a merged version of Monoidal categorification of cluster algebras (arXiv:1412.8106) and ibid, II (arXiv:1502.06714). Although the contents are the same, connsiderable modifications have been made. This version is published in Journal of the American Mathematical Society