Logarithmic Weisfeiler--Leman and Treewidth
March 14, 2023 Β· Declared Dead Β· + Add venue
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Authors
Michael Levet, Puck Rombach, Nicholas Sieger
arXiv ID
2303.07985
Category
cs.DS: Data Structures & Algorithms
Cross-listed
cs.CC,
cs.LO,
math.CO
Citations
0
Last Checked
5 months ago
Abstract
In this paper, we show that the $(3k+4)$-dimensional Weisfeiler--Leman algorithm can identify graphs of treewidth $k$ in $O(\log n)$ rounds. This improves the result of Grohe & Verbitsky (ICALP 2006), who previously established the analogous result for $(4k+3)$-dimensional Weisfeiler--Leman. In light of the equivalence between Weisfeiler--Leman and the logic $\textsf{FO} + \textsf{C}$ (Cai, FΓΌrer, & Immerman, Combinatorica 1992), we obtain an improvement in the descriptive complexity for graphs of treewidth $k$. Precisely, if $G$ is a graph of treewidth $k$, then there exists a $(3k+5)$-variable formula $\varphi$ in $\textsf{FO} + \textsf{C}$ with quantifier depth $O(\log n)$ that identifies $G$ up to isomorphism.
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