An FPT-Algorithm for Recognizing k-Apices of Minor-Closed Graph Classes

Ignasi Sau, Giannos Stamoulis, Dimitrios M. Thilikos, Emanuela Merelli, Anuj Dawar, Artur Czumaj
2020 International Colloquium on Automata, Languages and Programming  
Let G be a graph class. We say that a graph G is a k-apex of G if G contains a set S of at most k vertices such that G⧵S belongs to G. We prove that if G is minor-closed, then there is an algorithm that either returns a set S certifying that G is a k-apex of G or reports that such a set does not exist, in 2^{poly(k)}n³ time. Here poly is a polynomial function whose degree depends on the maximum size of a minor-obstruction of G, i.e., the minor-minimal set of graphs not belonging to G. In the
more » ... cial case where G excludes some apex graph as a minor, we give an alternative algorithm running in 2^{poly(k)}n² time.
doi:10.4230/lipics.icalp.2020.95 dblp:conf/icalp/SauST20 fatcat:zymlcqavozcsppneqo26mkiaoi