English

Tree decompositions meet induced matchings: beyond Max Weight Independent Set

Data Structures and Algorithms 2024-02-27 v1 Discrete Mathematics Combinatorics

Abstract

For a tree decomposition T\mathcal{T} of a graph GG, by μ(T)\mu(\mathcal{T}) we denote the size of a largest induced matching in GG all of whose edges intersect one bag of T\mathcal{T}. Induced matching treewidth of a graph GG is the minimum value of μ(T)\mu(\mathcal{T}) over all tree decompositions T\mathcal{T} of GG. Yolov [SODA 2018] proved that Max Weight Independent Set can be solved in polynomial time for graphs of bounded induced matching treewidth. In this paper we explore what other problems are tractable in such classes of graphs. As our main result, we give a polynomial-time algorithm for Min Weight Feedback Vertex Set. We also provide some positive results concerning packing induced subgraphs, which in particular imply a PTAS for the problem of finding a largest induced subgraph of bounded treewidth. These results suggest that in graphs of bounded induced matching treewidth, one could find in polynomial time a maximum-weight induced subgraph of bounded treewidth satisfying a given CMSO2_2 formula. We conjecture that such a result indeed holds and prove it for graphs of bounded tree-independence number, which form a rich and important family of subclasses of graphs of bounded induced matching treewidth. We complement these algorithmic results with a number of complexity and structural results concerning induced matching treewidth.

Keywords

Cite

@article{arxiv.2402.15834,
  title  = {Tree decompositions meet induced matchings: beyond Max Weight Independent Set},
  author = {Paloma T. Lima and Martin Milanič and Peter Muršič and Karolina Okrasa and Paweł Rzążewski and Kenny Štorgel},
  journal= {arXiv preprint arXiv:2402.15834},
  year   = {2024}
}

Comments

arXiv admin note: text overlap with arXiv:2209.12315