English

Hardness of Burning Number Problem on Regular Graphs

Data Structures and Algorithms 2026-05-15 v1 Discrete Mathematics Combinatorics

Abstract

The Burning Number Problem (BNP) models the spread of information or contagion in a network through a discrete-time process on a graph. At each step, one new vertex is selected as a burning source, while fire simultaneously spreads from previously burned vertices to their neighbors. The burning number of a graph is the minimum number of steps required to burn all vertices. The decision version asks whether the burning number is at most a given integer kk. BNP is known to be NP-complete even on restricted graph classes such as path forests. We study BNP on connected regular graphs, a natural and previously unexplored graph class. We prove that BNP is NP-complete on connected cubic graphs, and moreover APX-hard under this restriction. We further show that BNP remains APX-hard on connected dd-regular graphs for every fixed d4d \geq 4.

Keywords

Cite

@article{arxiv.2605.14730,
  title  = {Hardness of Burning Number Problem on Regular Graphs},
  author = {Dhanyamol Antony and L. Sunil Chandran and Anita Das and Shirish Gosavi and Dalu Jacob and Shashanka Kulamarva},
  journal= {arXiv preprint arXiv:2605.14730},
  year   = {2026}
}

Comments

35 pages, 10 figures

R2 v1 2026-07-22T07:12:13.005Z