Families of nested graphs with compatible symmetric-group actions
Abstract
For fixed positive integers and , the Kneser graph has vertices labeled by -element subsets of and edges between disjoint sets. Keeping fixed and allowing to grow, one obtains a family of nested graphs, each of which is acted on by a symmetric group in a way which is compatible with all of the other actions. In this paper, we provide a framework for studying families of this kind using the FI-module theory of Church, Ellenberg, and Farb, and show that this theory has a variety of asymptotic consequences for such families of graphs. These consequences span a range of topics including enumeration, concerning counting occurrences of subgraphs, topology, concerning Hom-complexes and configuration spaces of the graphs, and algebra, concerning the changing behaviors in the graph spectra.
Keywords
Cite
@article{arxiv.1711.07456,
title = {Families of nested graphs with compatible symmetric-group actions},
author = {Eric Ramos and Graham White},
journal= {arXiv preprint arXiv:1711.07456},
year = {2017}
}
Comments
v2. Fixed the statement of Theorem G, as well as various typos throughout