JOURNAL ARTICLE

Extremal and Degree Conditions for Path Extendability in Digraphs

Zan‐Bo ZhangXiaoyan ZhangHajo BroersmaDingjun Lou

Year: 2017 Journal:   SIAM Journal on Discrete Mathematics Vol: 31 (3)Pages: 1990-2014   Publisher: Society for Industrial and Applied Mathematics

Abstract

In the study of cycles and paths, the meta-conjecture of Bondy that sufficient conditions for Hamiltonicity often imply pancyclicity has motivated research on the existence of cycles and paths of many lengths. Hendry further introduced the stronger concepts of cycle extendability and path extendability, which require that every cycle or path can be extended to another one with one additional vertex. These concepts have been studied extensively, but there exist few results on path extendability in digraphs, as far as we know. In this paper, we make the first attempt in this direction. We establish a number of extremal and degree conditions for path extendability in general digraphs. Moreover, we prove that every path of length at least two in a regular tournament is extendable, with some exceptions. One of our proof approaches is a new contraction operation to transform nonextendable paths into nonextendable cycles.

Keywords:
Mathematics Tournament Conjecture Path (computing) Combinatorics Hamiltonian path Vertex (graph theory) Degree (music) Longest path problem Discrete mathematics Digraph Shortest path problem Graph Computer science

Metrics

3
Cited By
0.30
FWCI (Field Weighted Citation Impact)
16
Refs
0.56
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced Graph Theory Research
Physical Sciences →  Computer Science →  Computational Theory and Mathematics
semigroups and automata theory
Physical Sciences →  Computer Science →  Computational Theory and Mathematics
Limits and Structures in Graph Theory
Physical Sciences →  Mathematics →  Discrete Mathematics and Combinatorics

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