Note on near-spanning balanced antidirected trees missing from regular tournaments
Gregory Gutin, Yiming Hao
Source abstract
We construct near-spanning balanced antidirected trees that fail to embed in highly symmetric tournaments despite the conjectured semidegree condition being satisfied. More precisely, for every sufficiently large odd integer , we exhibit a regular vertex-transitive tournament on vertices and a balanced antidirected caterpillar on vertices with maximum degree at most that is not contained in the tournament. The host satisfies the strict threshold in both the semidegree and pseudo-semidegree settings, where is the number of arcs of the target tree. Consequently, this gives counterexamples to the uniform sublinear-degree interpretations of Conjectures~6.8 and~7.6 in Stein's survey (2024). The order of the target is best possible under the strict semidegree hypothesis. We also give a six-vertex balanced antidirected double-star missing from the seven-vertex Paley tournament, and show that seven is the smallest host order for a pseudo-semidegree counterexample with this fixed double-star.
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