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Local stable and unstable sets for random dynamical systems
[Submitted on 22 Jun 2026] · 2026-06-23 · via math updates on arXiv.org

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Abstract:We study local stable and unstable sets for two-sided continuous bundle random dynamical systems with positive entropy. These sets serve as natural substitutes for invariant manifolds when $C^{1+\alpha}$ smoothness of the system is unavailable. For uniformly equicontinuous random dynamical systems and ergodic invariant measures with positive fiber measure-theoretic entropy and positive fiber maximal Lyapunov exponent, we prove that the fiber entropy is determined by the action of the random maps on the unstable sets, and establish a lower bound for the Hausdorff dimension of local unstable sets in terms of the ratio of entropy to the maximal Lyapunov exponent. If the upper pointwise dimension of the conditional measure is finite, we obtain a weak form of Ruelle's inequality. Our results apply, in particular, to random dynamical systems generated by random differential equations with globally Lipschitz nonlinearities, and to discrete-time systems arising from stationary ergodic compositions of homeomorphisms drawn from a precompact subset of $C(X,X)$, where $X$ is a compact metric space.

Submission history

From: Xue Liu [view email]
[v1] Mon, 22 Jun 2026 14:10:39 UTC (30 KB)