Title
Triangle-degrees in graphs and tetrahedron coverings in 3-graphs.
Abstract
investigate a covering problem in $3$-uniform hypergraphs ($3$-graphs): given a $3$-graph $F$, what is $c_1(n,F)$, the least integer $d$ such that if $G$ is an $n$-vertex $3$-graph with minimum vertex degree $delta_1(G)u003ed$ then every vertex of $G$ is contained in a copy of $F$ in $G$ ? We asymptotically determine $c_1(n,F)$ when $F$ is the generalised triangle $K_4^{(3)-}$, and we give close to optimal bounds in the case where $F$ is the tetrahedron $K_4^{(3)}$ (the complete $3$-graph on $4$ vertices). This latter problem turns out to be a special instance of the following problem for graphs: given an $n$-vertex graph $G$ with $mu003e n^2/4$ edges, what is the largest $t$ such that some vertex in $G$ must be contained in $t$ triangles? give upper bound constructions for this problem that we conjecture are asymptotically tight. prove our conjecture for tripartite graphs, and use flag algebra computations to give some evidence of its truth in the general case.
Year
Venue
DocType
2019
arXiv: Combinatorics
Journal
Volume
Citations 
PageRank 
abs/1901.09560
0
0.34
References 
Authors
18
3
Name
Order
Citations
PageRank
Victor Falgas-Ravry1287.46
Klas Markström216225.84
Yi Zhao3406.92