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Characterizing symmetric spaces by their Lyapunov spectra

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abstract

We prove that closed negatively curved locally symmetric spaces are characterized up to isometry among all homotopy equivalent negatively curved manifolds by the Lyapunov spectra of the periodic orbits of their geodesic flows. This is done by constructing a new invariant measure for the geodesic flow that we refer to as the horizontal measure. We show that the Lyapunov spectrum of the horizontal measure alone suffices to locally characterize these locally symmetric spaces up to isometry. We associate to the horizontal measure a new invariant, the horizontal dimension. We tie this invariant to extensions of curvature pinching rigidity theorems for complex hyperbolic manifolds to pinching rigidity theorems for the Lyapunov spectrum. Our methods extend to give a rigidity theorem for smooth Anosov flows $f^{t}$ orbit equivalent to the geodesic flow $g^{t}_{X}$ of a closed negatively curved locally symmetric space $X$: $f^{t}$ is smoothly orbit equivalent to $g^{t}_{X}$ if and only if its Lyapunov spectra on all periodic orbits are a multiple of the corresponding Lyapunov spectra for $g^{t}_{X}$.

fields

math.DS 1

years

2019 1

verdicts

ACCEPT 1

representative citing papers

Flexibility of Lyapunov exponents

math.DS · 2019-08-21 · accept · novelty 8.0

Conservative Anosov diffeomorphisms with one-dimensional dominated splittings can be smoothly deformed to realize any strictly majorized Lyapunov spectrum.

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  • Flexibility of Lyapunov exponents math.DS · 2019-08-21 · accept · none · ref 17 · internal anchor

    Conservative Anosov diffeomorphisms with one-dimensional dominated splittings can be smoothly deformed to realize any strictly majorized Lyapunov spectrum.