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Sharp systolic inequalities for invariant tight contact forms on principal S1-bundles over S2

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arxiv 2403.02228 v3 pith:A7WIXMCD submitted 2024-03-04 math.SG math.DGmath.DS

classification math.SGmath.DGmath.DS
keywords inequalitymathbbsystoliccontactsharpalphabundleclass
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abstract

The systole of a contact form $\alpha$ is defined as the shortest period of closed Reeb orbits of $\alpha$. Given a non-trivial $\mathbb S^1$-principal bundle over $\mathbb S^2$ with total space $M$, we prove a sharp systolic inequality for the class of tight contact form on $M$ invariant under the $\mathbb S^1$-action. This inequality exhibits a behavior which depends on the Euler class of the bundle in a subtle way. As applications, we prove a sharp systolic inequality for rotationally symmetric Finsler metrics on $\mathbb S^2$, a systolic inequality for the shortest contractible closed Reeb orbit, and a particular case of a conjecture by Viterbo.

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    For fiberwise β-balanced metrics on the sphere, the shortest closed geodesic has squared length at most π/β times the area, and antipodally symmetric δ-pinched metrics are shown to be fiberwise balanced in an explicit...

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