Computing the Tutte Polynomial in Vertex-Exponential Time
- Andreas Björklund,
- ,
- Petteri Kaski,
- Mikko Koivisto
- Lund University,
- University of Helsinki
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOpen access
Publication Information
Output type
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOriginal language
EnglishPages from-to (Number of pages)
Pages 677-686Publication milestones
- Published - 2008
Publication status
Published - 2008
Publisher
IEEE, United StatesISBN (Print)
978-0-7695-34367Publication IDs
- Scopus: 57949113843
Host publication title
2008 IEEE 49th Annual IEEE Symposium on Foundations of Computer Science (FOCS)Abstract
The deletion–contraction algorithm is perhapsthe most popular method for computing a host of fundamental graph invariants such as the chromatic, flow, and reliability polynomials in graph theory, the Jones polynomial of an alternating link in knot theory, and the partition functions of the models of Ising, Potts, and Fortuin–Kasteleyn in statistical physics. Prior to this work, deletion–contraction was also the fastest known general-purpose algorithm for these invariants, running in time roughly proportional to the number of spanning trees in the input graph.Here, we give a substantially faster algorithm that computes the Tutte polynomial—and hence, all the aforementioned invariants and more—of an arbitrary graph in time within a polynomial factor of the number of connected vertex sets. The algorithm actually evaluates a multivariate generalization of the Tutte polynomial by making use of an identity due to Fortuin and Kasteleyn. We also provide a polynomial-space variant of the algorithm and give an analogous result for Chung and Graham's cover polynomial.
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Related Event
Title
2008 IEEE 49th Annual IEEE Symposium on Foundations of Computer Science (FOCS)
Event type
ConferenceDate
25/10/2008 - 28/10/2008Location
Philadelphia, PAUnited States
