English

On balanceable and simply balanceable regular graphs

Combinatorics 2024-09-17 v1 Computational Complexity Discrete Mathematics

Abstract

We continue the study of balanceable graphs, defined by Caro, Hansberg, and Montejano in 2021 as graphs GG such that any 22-coloring of the edges of a sufficiently large complete graph containing sufficiently many edges of each color contains a balanced copy of GG. While the problem of recognizing balanceable graphs was conjectured to be NP-complete by Dailly, Hansberg, and Ventura in 2021, balanceable graphs admit an elegant combinatorial characterization: a graph is balanceable if and only there exist two vertex subsets, one containing half of all the graph's edges and another one such that the corresponding cut contains half of all the graph's edges. We consider a special case of this property, namely when one of the two sets is a vertex cover, and call the corresponding graphs simply balanceable. We prove a number of results on balanceable and simply balanceable regular graphs. First, we characterize simply balanceable regular graphs via a condition involving the independence number of the graph. Second, we address a question of Dailly, Hansberg, and Ventura from 2021 and show that every cubic graph is balanceable. Third, using Brooks' theorem, we show that every 44-regular graph with order divisible by 44 is balanceable. Finally, we show that it is NP-complete to determine if a 99-regular graph is simply balanceable.

Keywords

Cite

@article{arxiv.2403.05418,
  title  = {On balanceable and simply balanceable regular graphs},
  author = {Milad Ahanjideh and Martin Milanič and Mary Servatius},
  journal= {arXiv preprint arXiv:2403.05418},
  year   = {2024}
}
R2 v1 2026-06-28T15:13:46.280Z