The Holonomy of Spherically Symmetric Projective Finsler Metrics of Constant Curvature

Mezrag Asma, Muzsnay Zoltan
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Abstract

In this paper, we investigate the holonomy group of n-dimensional projective Finsler metrics of constant curvature. We establish that in the spherically symmetric case, the holonomy group is maximal, and for a simply connected manifold it is isomorphic to \({\mathcal {D}}i\!f \hspace{-3pt} f_o({\mathbb {S}}^{n-1})\), the connected component of the identity of the group of smooth diffeomorphism on the \({n-1}\)-dimensional sphere. In particular, the holonomy group of the n-dimensional standard Funk metric and the Bryant–Shen metrics are maximal and isomorphic to \({\mathcal {D}}i\!f \hspace{-3pt} f_o({\mathbb {S}}^{n-1})\). These results are the firsts describing explicitly the holonomy group of n-dimensional Finsler manifolds in the non-Berwaldian (that is when the canonical connection is non-linear) case.

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恒曲率球面对称投影芬斯勒度量的整体性
本文研究了 n 维恒定曲率投影 Finsler 度量的全局群。我们发现,在球对称情况下,全局群是最大的,对于简单相连的流形,它与\({\mathcal {D}}i\!f \hspace{-3pt} f_o({\mathbb {S}}^{n-1})\) 同构,后者是\({n-1}\)维球面上光滑差分群的连通分量。特别是,n 维标准 Funk 度量和 Bryant-Shen 度量的全局群是最大的,并且与 \({\mathcal {D}}i\!f \hspace{-3pt} f_o({\mathbb {S}}^{n-1})\) 同构。这些结果首次明确描述了n维芬斯勒流形在非伯瓦尔迪(即当规范连接为非线性时)情况下的全局群。
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