Independent Feedback Vertex Set for $P_5$-free Graphs
Abstract
The NP-complete problem Feedback Vertex Set is that of deciding whether or not it is possible, for a given integer , to delete at most vertices from a given graph so that what remains is a forest. The variant in which the deleted vertices must form an independent set is called Independent Feedback Vertex Set and is also NP-complete. In fact, even deciding if an independent feedback vertex set exists is NP-complete and this problem is closely related to the -Colouring problem, or equivalently, to the problem of deciding whether or not a graph has an independent odd cycle transversal, that is, an independent set of vertices whose deletion makes the graph bipartite. We initiate a systematic study of the complexity of Independent Feedback Vertex Set for -free graphs. We prove that it is NP-complete if contains a claw or cycle. Tamura, Ito and Zhou proved that it is polynomial-time solvable for -free graphs. We show that it remains polynomial-time solvable for -free graphs. We prove analogous results for the Independent Odd Cycle Transversal problem, which asks whether or not a graph has an independent odd cycle transversal of size at most for a given integer . Finally, in line with our underlying research aim, we compare the complexity of Independent Feedback Vertex Set for -free graphs with the complexity of -Colouring, Independent Odd Cycle Transversal and other related problems.
Cite
@article{arxiv.1707.09402,
title = {Independent Feedback Vertex Set for $P_5$-free Graphs},
author = {Marthe Bonamy and Konrad K. Dabrowski and Carl Feghali and Matthew Johnson and Daniel Paulusma},
journal= {arXiv preprint arXiv:1707.09402},
year = {2017}
}