Counting and packing Hamilton cycles in dense graphs and oriented graphs

Asaf Ferber, Michael Krivelevich, Benny Sudakov

Research output: Contribution to journalArticlepeer-review

Abstract

We present a general method for counting and packing Hamilton cycles in dense graphs and oriented graphs, based on permanent estimates. We utilize this approach to prove several extremal results. In particular, we show that every nearly cn-regular oriented graph on n vertices with c>3/8 contains (cn/e)n(1+o(1))n directed Hamilton cycles. This is an extension of a result of Cuckler, who settled an old conjecture of Thomassen about the number of Hamilton cycles in regular tournaments. We also prove that every graph G on n vertices of minimum degree at least (1/2+o(1))n contains at least (1−o(1))regeven(G)/2 edge-disjoint Hamilton cycles, where regeven(G) is the maximum even degree of a spanning regular subgraph of G. This establishes an approximate version of a conjecture of Kühn, Lapinskas and Osthus.

Original languageEnglish
Pages (from-to)196-220
Number of pages25
JournalJournal of Combinatorial Theory. Series B
Volume122
DOIs
StatePublished - 1 Jan 2017

Keywords

  • Counting
  • Hamilton cycles
  • Oriented graphs
  • Packing

All Science Journal Classification (ASJC) codes

  • Theoretical Computer Science
  • Discrete Mathematics and Combinatorics
  • Computational Theory and Mathematics

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