2012/06/30 by Gunnar Brinkmann, Jan Goedgebeur, Jonas Hägglund +1 · 1 citation
Computer Science · Mathematics · #Advanced Graph Theory Research #Class (philosophy) #Commutative Algebra and Its Applications #Conjecture #Counterexample #Cover (algebra) #Cubic graph #Limits and Structures in Graph Theory #cs.DM #math.CO
paper · pdf · doi:10.1016/j.jctb.2013.05.001
Submitted for publication V2: various corrections V3: Figures updated and typos corrected. This version differs from the published one in that the Arxiv-version has data about the automorphisms of snarks; Journal of Combinatorial Theory. Series B. 2013
openalex publication_date 2013/06/13 · arxiv created 2013/06/28 · arxiv updated 2013/07/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/08/05
For many of the unsolved problems concerning cycles and matchings in graphs it is known that it is sufficient to prove them for snarks, the class of nontrivial 3-regular graphs which cannot be 3-edge coloured. In the first part of this paper we present a new algorithm for generating all non-isomorphic snarks of a given order. Our implementation of the new algorithm is 14 times faster than previous programs for generating snarks, and 29 times faster for generating weak snarks. Using this program we have generated all non-isomorphic snarks on n≤ 36 vertices. Previously lists up to n=28 vertices have been published. In the second part of the paper we analyze the sets of generated snarks with respect to a number of properties and conjectures. We find that some of the strongest versions of the cycle double cover conjecture hold for all snarks of these orders, as does Jaeger's Petersen colouring conjecture, which in turn implies that Fulkerson's conjecture has no small counterexamples. In contrast to these positive results we also find counterexamples to eight previously published conjectures concerning cycle coverings and the general cycle structure of cubic graphs.