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1.
Cycle separating cuts in possible counterexamples to the cycle double cover and the Berge-Fulkerson conjectures
Edita Máčajová, Giuseppe Mazzuoccolo, Gloria Tabarelli, 2026, original scientific article

Abstract: It is known that smallest counterexamples to the Cycle Double Cover Conjecture and Berge-Fulkerson Conjecture (if they exist) are cyclically 4- and 5-edge-connected, respectively. We further analyse small cycle separating cuts in possible counterexamples. We prove that if a smallest counterexample G to the CDC Conjecture contains a cycle separating 4-cut S, then the behaviour of the admissible CDC coverings along the dangling edges of the two 4-poles induced by S is uniquely determined among more than 2 a priori possibilities. Similarly, for the Berge-Fulkerson Conjecture, we prove that among more than 2 a priori possibilities, there are only 13 pairs of admissible sets that could occur along the dangling edges of a 5-cut in a smallest counterexample.
Keywords: snark, cyclic connectivity, cycle double cover, Berge-Fulkerson conjecture
Published in RUP: 03.03.2026; Views: 245; Downloads: 4
.pdf Full text (412,02 KB)

2.
A sharp upper bound for the harmonious total chromatic number of graphs and multigraphs
Marién Abreu, John Baptist Gauci, Davide Mattiolo, Giuseppe Mazzuoccolo, Federico Romaniello, Christian Rubio-Montiel, Tommaso Traetta, 2025, original scientific article

Abstract: A proper total colouring of a graph G is called harmonious if it has the further property that when replacing each unordered pair of incident vertices and edgeswith their colours, then no pair of colours appears twice. The smallest number of colours for it to exist is called the harmonious total chromatic number of G, denoted by h_t(G). Here, we give a general upper bound for h_t(G) in terms of the order n of G. Our two main results are obvious consequences of the computation of the harmonious total chromatic number of the complete graph Kn and of the complete multigraph λK_n, where λ is the number of edges joining each pair of vertices of Kn. In particular, Araujo-Pardo et al. have recently shown that 3/2 n ≤ h_t(K_n)≤ 5/3 n + θ(1). In this paper, we prove that h_t(K_n) = ⌈3/2 n⌉ except for h_t(K₁) = 1 and h_t(K₄) = 7; therefore, h_t(G)≤ ⌈3/2 n⌉, for every graph G on n > 4 vertices. Finally, we extend such a result to the harmonious total chromatic number of the complete multigraph λKn and as a consequence show that h_t(G) ≤ (λ-1)(2⌈n/2⌉-1)+⌈3n/2⌉ for n > 4, where G is a multigraph such that λ is the maximum number of edges between any two vertices.
Keywords: total colouring, harmonious colouring, complete graphs, complete multigraphs, Levi graph
Published in RUP: 03.11.2025; Views: 642; Downloads: 16
.pdf Full text (387,22 KB)

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