Subexponential-Time Algorithms for Finding Large Induced Sparse Subgraphs
Publication date
2019
Editors
Jansen, Bart M.P.
Telle, Jan Arne
Advisors
Supervisors
Document Type
Part of book
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Abstract
Let C and D be hereditary graph classes. Consider the following problem: given a graph G in D, find a largest, in terms of the number of vertices, induced subgraph of G that belongs to C. We prove that it can be solved in 2^{o(n)} time, where n is the number of vertices of G, if the following conditions are satisfied: - the graphs in C are sparse, i.e., they have linearly many edges in terms of the number of vertices; - the graphs in D admit balanced separators of size governed by their density, e.g., O(Delta) or O(sqrt{m}), where Delta and m denote the maximum degree and the number of edges, respectively; and - the considered problem admits a single-exponential fixed-parameter algorithm when parameterized by the treewidth of the input graph. This leads, for example, to the following corollaries for specific classes C and D: - a largest induced forest in a P_t-free graph can be found in 2^{O~(n^{2/3})} time, for every fixed t; and - a largest induced planar graph in a string graph can be found in 2^{O~(n^{3/4})} time.
Keywords
subexponential algorithm, feedback vertex set, Pt-free graphs, string graphs
Citation
Novotná, J, Okrasa, K, Pilipczuk, M, Rzążewski, P, van Leeuwen, E J & Walczak, B 2019, Subexponential-Time Algorithms for Finding Large Induced Sparse Subgraphs. in B M P Jansen & J A Telle (eds), 14th International Symposium on Parameterized and Exact Computation : IPEC 2019, September 11-13, 2019, Munich, Germany., 23, Leibniz International Proceedings in Informatics (LIPIcs), vol. 148, Schloss Dagstuhl – Leibniz-Zentrum für Informatik GmbH, Saarbrücken|. https://doi.org/10.4230/LIPIcs.IPEC.2019.23