Improved bounds for centered colorings
Michal Debski, Stefan Felsner, Piotr Micek, Felix Schröder
Abstract
A vertex coloring φ of a graph G is p-centered if for every connected subgraph H of G either φ uses more than p colors on H or there is a color that appears exactly once on H. Centered colorings form one of the families of parameters that allow to capture notions of sparsity of graphs: A class of graphs has bounded expansion if and only if there is a function f such that for every p 1, every graph in the class admits a p-centered coloring using at most f (p) colors.
In this paper, we give upper bounds for the maximum number of colors needed in a p-centered coloring of graphs from several widely studied graph classes. We show that: (1) planar graphs admit p-centered colorings with O(p 3 log p) colors where the previous bound was O(p 19 ); (2) bounded degree graphs admit p-centered colorings with O(p) colors while it was conjectured that they may require exponential number of colors in p; (3) graphs avoiding a fixed graph as a topological minor admit p-centered colorings with a polynomial in p number of colors. All these upper bounds imply polynomial algorithms for computing the colorings. Prior to this work there were no non-trivial lower bounds known. We show that: (4) there are graphs of treewidth t that require p+t t colors in any p-centered coloring. This bound matches the upper bound; (5) there are planar graphs that require Ω(p 2 log p) colors in any p-centered coloring. We also give asymptotically tight bounds for outerplanar graphs and planar graphs of treewidth 3. We prove our results with various proof techniques. The upper bound for planar graphs involves an application of a recent structure theorem while the upper bound for bounded degree graphs comes from the entropy compression method. We lift the result for bounded degree graphs to graphs avoiding a fixed topological minor using the Grohe-Marx structure theorem.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Cited by top-tier papers3
- Proof of the Clustered Hadwiger ConjectureVida Dujmovic, Louis Esperet, Pat Morin, David R. WoodFOCS 2023 · 7 citations
- The Grid-Minor Theorem RevisitedVida Dujmovic, Robert Hickingbotham, Jedrzej Hodor, Gwenaël Joret et al.SODA 2024 · 3 citations
- Centered colorings in minor-closed graph classesJedrzej Hodor, Hoang La, Piotr Micek, Clément RambaudSODA 2026
Related papers
- Weak coloring numbers of minor-closed graph classesJedrzej Hodor, Hoang La, Piotr Micek, Clément RambaudSODA 2025
- Computing Square Colorings on Bounded-Treewidth and Planar GraphsAkanksha Agrawal, Dániel Marx, Daniel Neuen, Jasper SlusallekSODA 2023
- Efficiently Finding and Counting Patterns with Distance Constraints in Sparse GraphsDaniel Lokshtanov, Fahad Panolan, Saket Saurabh, Jie Xue et al.STOC 2025 · 2 citations
- Edge-Coloring Algorithms for Bounded Degree MultigraphsAbhishek DhawanSODA 2024 · 4 citations
- Faster (Δ+1)-Edge Coloring: Breaking the m√n Time BarrierSayan Bhattacharya, Din Carmon, Martín Costa, Shay Solomon et al.FOCS 2024 · 5 citations
