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Abstract
In this paper we further explore the recently discovered connection by Björklund and Kaski [STOC 2024] and Pratt [STOC 2024] between the asymptotic rank conjecture of Strassen [Progr. Math. 1994] and the three-way partitioning problem. We show that under the asymptotic rank conjecture, the chromatic number of an n-vertex graph can be computed deterministically in O (1.99982n ) time, thus giving a conditional answer to a question of Zamir [ICALP 2021], and questioning the optimality of the 2n poly(n ) time algorithm for chromatic number by Björklund, Husfeldt, and Koivisto [SICOMP 2009].
Viewed in the other direction, if chromatic number indeed requires deterministic algorithms to run in close to 2n time, we obtain a sequence of explicit tensors of superlinear rank, falsifying the asymptotic rank conjecture.
Our technique is a combination of earlier algorithms for detecting k-colorings for small k and enumerating k-colorable subgraphs, with an extension and derandomisation of Pratt’s tensor-based algorithm for balanced three-way partitioning to the unbalanced case.
Viewed in the other direction, if chromatic number indeed requires deterministic algorithms to run in close to 2n time, we obtain a sequence of explicit tensors of superlinear rank, falsifying the asymptotic rank conjecture.
Our technique is a combination of earlier algorithms for detecting k-colorings for small k and enumerating k-colorable subgraphs, with an extension and derandomisation of Pratt’s tensor-based algorithm for balanced three-way partitioning to the unbalanced case.
| Originalsprog | Engelsk |
|---|---|
| Titel | Proceedings of the Annual ACM-SIAM Symposium on Discrete Algorithms |
| Antal sider | 15 |
| Publikationsdato | 1 jan. 2025 |
| Sider | 2804-2818 |
| ISBN (Trykt) | 9798331312008 |
| DOI | |
| Status | Udgivet - 1 jan. 2025 |
Fingeraftryk
Dyk ned i forskningsemnerne om 'Fast Deterministic Chromatic Number under the Asymptotic Rank Conjecture'. Sammen danner de et unikt fingeraftryk.Projekter
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CountHom: Counting (with) homomorphisms
Curticapean, R.-C. (PI) & Seppelt, T. F. (Samarbejdspartner)
01/04/2023 → 31/03/2028
Projekter: Projekt › Forskning