The Number of Nowhere-Zero Flows on Graphs and Signed Graphs

dc.creatorBeck, Matthias
dc.creatorZaslavsky, Thomas
dc.date2003-09-19
dc.date2006-03-14
dc.date.accessioned2026-07-07T08:03:08Z
dc.date.available2026-07-07T08:03:08Z
dc.descriptionA nowhere-zero $k$-flow on a graph $Γ$ is a mapping from the edges of $Γ$ to the set $\{\pm1, \pm2, ..., \pm(k-1)\} \subset \bbZ$ such that, in any fixed orientation of $Γ$, at each node the sum of the labels over the edges pointing towards the node equals the sum over the edges pointing away from the node. We show that the existence of an \emph{integral flow polynomial} that counts nowhere-zero $k$-flows on a graph, due to Kochol, is a consequence of a general theory of inside-out polytopes. The same holds for flows on signed graphs. We develop these theories, as well as the related counting theory of nowhere-zero flows on a signed graph with values in an abelian group of odd order. Our results are of two kinds: polynomiality or quasipolynomiality of the flow counting functions, and reciprocity laws that interpret the evaluations of the flow polynomials at negative integers in terms of the combinatorics of the graph.
dc.description17 pages, to appear in J. Combinatorial Th. Ser. B
dc.identifierhttps://arxiv.org/abs/math/0309331
dc.identifierhttp://arxiv.org/abs/math/0309331
dc.identifierJ. Combinatorial Th. Ser. B 96, no. 6 (2006), 901-918
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/129471
dc.subjectCombinatorics
dc.subject05C99, 05C22; 05B35, 52B20, 52C35
dc.titleThe Number of Nowhere-Zero Flows on Graphs and Signed Graphs
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