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Maximum List r-Colorable Induced Subgraphs in kP₃-Free Graphs.

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Abstract

We show that, for every fixed positive integers r and k, Max-Weight List r-Colorable Induced Subgraph admits a polynomial-time algorithm on kP3-free graphs. This problem is a common generalization of Max-Weight Independent Set, Odd Cycle Transversal and List r-Coloring, among others. Our result has several consequences. First, it implies that, for every fixed r ≥ 5, assuming P ≠ NP, Max-Weight List r-Colorable Induced Subgraph is polynomial-time solvable on H-free graphs if and only if H is an induced subgraph of either kP3 or P5 + kP1, for some k ≥ 1. Second, it makes considerable progress toward a complexity dichotomy for Odd Cycle Transversal on H-free graphs, allowing to answer a question of Agrawal, Lima, Lokshtanov, Rzążewski, Saurabh, and Sharma [ACM Trans. Algorithms 2025]. Third, it gives a short and self-contained proof of the known result of Chudnovsky, Hajebi, and Spirkl [Combinatorica 2024] that List r-Coloring on kP3-free graphs is polynomial-time solvable for every fixed r and k. We also consider two natural distance-d generalizations of Max-Weight Independent Set and List r-Coloring and provide polynomial-time algorithms on kP3-free graphs for every fixed integers r, k, and d ≥ 6.
Original languageEnglish
Title of host publicationLeibniz International Proceedings in Informatics, LIPIcs
Volume33rd Annual European Symposium on Algorithms (ESA 2025)
PublisherSchloss Dagstuhl - Leibniz-Zentrum fuer Informatik GmbH
Publication date1 Oct 2025
Pages40:1-40:13
ISBN (Print)9783959773959
DOIs
Publication statusPublished - 1 Oct 2025
EventEuropean Symposium on Algorithms - Poland, Warsaw, Poland
Duration: 15 Sept 202517 Sept 2025
Conference number: 33
https://algo-conference.org/2025/esa/
https://drops.dagstuhl.de/entities/volume/LIPIcs-volume-351

Conference

ConferenceEuropean Symposium on Algorithms
Number33
LocationPoland
Country/TerritoryPoland
CityWarsaw
Period15/09/202517/09/2025
Internet address

Keywords

  • Combinatorics
  • Discrete Mathematics
  • Data Structures and Algorithms

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