Families of Gröbner Degenerations, Grassmannians and Universal Cluster Algebras

Let V be the weighted projective variety defined by a weighted homogeneous ideal J and C a maximal cone in the Gröbner fan of J with m rays. We construct a flat family over Am that assembles the Gröbner degenerations of V associated with all faces of C. This is a multi-parameter generalization of th...

Full description

Saved in:
Bibliographic Details
Published in:Symmetry, integrability and geometry, methods and applications
Main Authors: Bossinger, Lara, Mohammadi, Fatemeh, Nájera Chávez, Alfredo
Format: Journal Article
Language:English
Published: Department of Applied Research, Institute of Math 01-01-2021
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:Let V be the weighted projective variety defined by a weighted homogeneous ideal J and C a maximal cone in the Gröbner fan of J with m rays. We construct a flat family over Am that assembles the Gröbner degenerations of V associated with all faces of C. This is a multi-parameter generalization of the classical one-parameter Gröbner degeneration associated to a weight. We explain how our family can be constructed from Kaveh-Manon's recent work on the classification of toric flat families over toric varieties: it is the pull-back of a toric family defined by a Rees algebra with base XC (the toric variety associated to C) along the universal torsor Am→XC. We apply this construction to the Grassmannians Gr(2,Cn) with their Plücker embeddings and the Grassmannian Gr(3,C6) with its cluster embedding. In each case, there exists a unique maximal Gröbner cone whose associated initial ideal is the Stanley-Reisner ideal of the cluster complex. We show that the corresponding cluster algebra with universal coefficients arises as the algebra defining the flat family associated to this cone. Further, for Gr(2,Cn) we show how Escobar-Harada's mutation of Newton-Okounkov bodies can be recovered as tropicalized cluster mutation.
Bibliography:SIGMA. Symmetry, Integrability and Geometry
ISSN:1815-0659
1815-0659
DOI:10.3842/SIGMA.2021.059