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The Fadell-Rabinowitz index and multiplicity of non-contractible closed geodesics on Finsler $\mathbb{R}P^{n}$ (1605.07292v2)

Published 24 May 2016 in math.DG and math.DS

Abstract: In this paper, we prove that for every irreversible Finsler $n$-dimensional real projective space $(\mathbb{R}Pn,F)$ with reversibility $\lambda$ and flag curvature $K$ satisfying $\frac{16}{9}\left(\frac{\lambda}{1+\lambda}\right)2<K\le 1$ with $\lambda<3$, there exist at least $n-1$ non-contractible closed geodesics. In addition, if the metric $F$ is bumpy with $\frac{64}{25}\left(\frac{\lambda}{1+\lambda}\right)2<K\le 1$ and $\lambda<\frac{5}{3}$, then there exist at least $2[\frac{n+1}{2}]$ non-contractible closed geodesics, which is the optimal lower bound due to Katok's example. The main ingredients of the proofs are the Fadell-Rabinowitz index theory of non-contractible closed geodesics on $(\mathbb{R}Pn,F)$ and the $S1$-equivariant Poincar$\acute{e}$ series of the non-contractible component of the free loop space on $\mathbb{R}Pn$.

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