English

On 1-11-representability and multi-1-11-representability of graphs

Combinatorics 2025-01-24 v1

Abstract

Jeff Remmel introduced the concept of a kk-11-representable graph in 2017. This concept was first explored by Cheon et al. in 2019, who considered it as a natural extension of word-representable graphs, which are exactly 0-11-representable graphs. A graph GG is kk-11-representable if it can be represented by a word ww such that for any edge (resp., non-edge) xyxy in GG the subsequence of ww formed by xx and yy contains at most kk (resp., at least k+1k+1) pairs of consecutive equal letters. A remarkable result of Cheon at al. is that any graph is 2-11-representable, while it is still unknown whether every graph is 1-11-representable. Cheon et al. showed that the class of 1-11-representable graphs is strictly larger than that of word-representable graphs, and they introduced a useful toolbox to study 1-11-representable graphs, which was extended by additional powerful tools suggested by Futorny et al. in 2024. In this paper, we prove that all graphs on at most 8 vertices are 1-11-representable hence extending the known fact that all graphs on at most 7 vertices are 1-11-representable. Also, we discuss applications of our main result in the study of multi-1-11-representation of graphs we introduce in this paper analogously to the notion of multi-word-representation of graphs suggested by Kenkireth and Malhotra in 2023.

Keywords

Cite

@article{arxiv.2501.13871,
  title  = {On 1-11-representability and multi-1-11-representability of graphs},
  author = {Mohammed Alshammari and Sergey Kitaev and Chaoliang Tang and Tianyi Tao and Junchi Zhang},
  journal= {arXiv preprint arXiv:2501.13871},
  year   = {2025}
}

Comments

arXiv admin note: text overlap with arXiv:2407.17784

R2 v1 2026-06-28T21:15:10.495Z