Structural and computational results on platypus graphs
نویسندگان
چکیده
A platypus graph is a non-hamiltonian graph for which every vertex-deleted subgraph is traceable. They are closely related to families of graphs satisfying interesting conditions regarding longest paths and longest cycles, for instance hypohamiltonian, leaf-stable, and maximally non-hamiltonian graphs. In this paper, we first investigate cubic platypus graphs, covering all orders for which such graphs exist: in the general and polyhedral case as well as for snarks. We then present (not necessarily cubic) platypus graphs of girth up to 16—whereas no hypohamiltonian graphs of girth greater than 7 are known—and study their maximum degree, generalising two theorems of Chartrand, Gould, and Kapoor. Using computational methods, we determine the complete list of all non-isomorphic platypus graphs for various orders and girths. Finally, we address two questions raised by the third author in [J. Graph Theory 86 (2017) 223–243].
منابع مشابه
On Non-Hamiltonian Graphs for which every Vertex-Deleted Subgraph Is Traceable
We call a graph G a platypus if G is non-hamiltonian, and for any vertex v in G, the graph G− v is traceable. Every hypohamiltonian and every hypotraceable graph is a platypus, but there exist platypuses which are neither hypohamiltonian nor hypotraceable. Among other things, we give a sharp lower bound on the size of a platypus depending on its order, draw connections to other families of grap...
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عنوان ژورنال:
- CoRR
دوره abs/1712.05158 شماره
صفحات -
تاریخ انتشار 2017