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arXiv · 2401.11277

Averaging theorems for slow fast systems in $\mathbb{Z}$-extensions (discrete time)

Abstract

We study the averaging method for flows perturbed by a dynamical system preserving an infinite measure. Motivated by the case of perturbation by the collision dynamic on the finite horizon $\mathbb Z$-periodic Lorentz gas and in view of future development, we establish our results in a general context of perturbation by $\mathbb Z$-extension over chaotic probability preserving dynamical systems. As a by product, we prove limit theorems for non-stationary Birkhoff sums for such infinite measure preserving dynamical systems.

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BibTeXRIS

Maxence Phalempin. 2024-01-20. Averaging theorems for slow fast systems in $\mathbb{Z}$-extensions (discrete time). https://arxiv.org/abs/2401.11277

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