English

Graph Invariants Based on the Divides Relation and Ordered by Prime Signatures

Number Theory 2014-05-22 v1

Abstract

Directed acyclic graphs whose nodes are all the divisors of a positive integer nn and arcs (a,b)(a,b) defined by aa divides bb are considered. Fourteen graph invariants such as order, size, and the number of paths are investigated for two classic graphs, the Hasse diagram GH(n)G^H(n) and its transitive closure GT(n)G^T(n) derived from the divides relation partial order. Concise formulae and algorithms are devised for these graph invariants and several important properties of these graphs are formally proven. Integer sequences of these invariants in natural order by nn are computed and several new sequences are identified by comparing them to existing sequences in the On-Line Encyclopedia of Integer Sequences. These new and existing integer sequences are interpreted from the graph theory point of view. Both GH(n)G^H(n) and GT(n)G^T(n) are characterized by the prime signature of nn. Hence, two conventional orders of prime signatures, namely the graded colexicographic and the canonical orders are considered and additional new integer sequences are discovered.

Keywords

Cite

@article{arxiv.1405.5283,
  title  = {Graph Invariants Based on the Divides Relation and Ordered by Prime Signatures},
  author = {Sung-Hyuk Cha and Edgar G. DuCasse and Louis V. Quintas},
  journal= {arXiv preprint arXiv:1405.5283},
  year   = {2014}
}
R2 v1 2026-06-22T04:19:32.321Z