2023/02/15 by Florence Maas-Gariépy, Maas-Gariépy, Florence · 1 citation
Materials Science · Mathematics · #Advanced Combinatorial Mathematics #Analytic and geometric function theory #Combinatorics (math.CO) #FOS: Mathematics #Quantum Algebra (math.QA) #Quasicrystal Structures and Properties #Representation Theory (math.RT)
paper · pdf · doi:10.48550/arxiv.2302.07694
openalex publication_date 2023/02/15 · openalex created_date 2023/02/18 · openalex updated_date 2026/07/28
We use crystals of tableaux and descent compositions to understand the decomposition of Schur functions sλ into Gessel's fundamental quasisymmetric functions Fα. The connected crystal of tableaux B(λ), associated to sλ, is shown to be partitionned into a disjoint union of connected induced subgraphs B(Tα) corresponding to the Fα's. We show that these subgraphs, which we call quasicrystals, are isomorphic (as graphs) to specific crystals of tableaux. This allows us to give a formula for the number of tableaux of shape λ and maximal entry n. We also use this setting to give a constructive proof of a combinatorial formula for Kostka numbers Kλμ. We study the position of the quasicrystals within the crystal B(λ), and show that they appear in dually positionned pairs, with the crystal anti-automorphism between them being given by a generalization of Schützenberger's evacuation. We introduce the notion of skeleton of the crystal B(λ) given by replacing each subgraph B(Tα) by the associated standard tableau of shape λ. We conjecture that its graph includes the dual equivalence graph for λ, introduced by Assaf, and that its subgraphs of tableaux with fixed number of descents have particular structures. Finally, we describe applications to plethysm, among which we give an algorithm to express any symmetric sum of fundamental quasisymmetric functions into the Schur basis, whose construction gives insight into the relationship between the two basis.