On the primality of totally ordered $q$-factorization graphs

Fuente: arXiv
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Main Authors: Moura, Adriano, Silva, Clayton
Format: Preprint
Published: 2022
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author Moura, Adriano
Silva, Clayton
author_facet Moura, Adriano
Silva, Clayton
contents We introduce the combinatorial notion of a $q$-fatorization graph intended as a tool to study and express results related to the classification of prime simple modules for quantum affine algebras. These are directed graphs equipped with three decorations: a coloring and a weight map on vertices, and an exponent map on arrows (the exponent map can be seen as a weight map on arrows). Such graphs do not contain oriented cycles and, hence, the set of arrows induces a partial order on the set of vertices. In this first paper on the topic, beside setting the theoretical base of the concept, we establish several criteria for deciding whether or not a tensor product of two simple modules is a highest-$\ell$-weight module and use such criteria to prove, for type $A$, that a simple module whose $q$-factorization graph has a totally ordered vertex set is prime.
format Preprint
id arxiv_https___arxiv_org_abs_2204_10439
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle On the primality of totally ordered $q$-factorization graphs
Moura, Adriano
Silva, Clayton
Representation Theory
Quantum Algebra
17B10, 17B37, 20G42, 81R10, 05C20
We introduce the combinatorial notion of a $q$-fatorization graph intended as a tool to study and express results related to the classification of prime simple modules for quantum affine algebras. These are directed graphs equipped with three decorations: a coloring and a weight map on vertices, and an exponent map on arrows (the exponent map can be seen as a weight map on arrows). Such graphs do not contain oriented cycles and, hence, the set of arrows induces a partial order on the set of vertices. In this first paper on the topic, beside setting the theoretical base of the concept, we establish several criteria for deciding whether or not a tensor product of two simple modules is a highest-$\ell$-weight module and use such criteria to prove, for type $A$, that a simple module whose $q$-factorization graph has a totally ordered vertex set is prime.
title On the primality of totally ordered $q$-factorization graphs
topic Representation Theory
Quantum Algebra
17B10, 17B37, 20G42, 81R10, 05C20
url https://arxiv.org/abs/2204.10439