Explorerβ€ΊMathematicsβ€ΊMathematics
Research PaperResearchia:202608.25033

Strong Averaging Principle and Long-Time Dynamics for Fast-Slow SDEs with Increasing Time-Scale Separation and Degenerate Noise

Sebastian Kassing

Abstract

We establish a strong averaging principle for fast-slow stochastic differential equations with a time-dependent scale-separation parameter $(\varepsilon_t)_{t \geq 0}$ satisfying $\varepsilon_t \to 0$ as $t \to \infty$. In contrast to approaches based on noise-induced smoothing or elliptic regularity, our approach relies on dissipativity of the frozen fast dynamics and therefore permits degenerate diffusion coefficients. We prove a maximal $L^p$-estimate between the slow variable and the average...

Submitted: August 25, 2026Subjects: Mathematics; Mathematics

Description / Details

We establish a strong averaging principle for fast-slow stochastic differential equations with a time-dependent scale-separation parameter (Ξ΅t)tβ‰₯0(\varepsilon_t)_{t \geq 0} satisfying Ξ΅tβ†’0\varepsilon_t \to 0 as tβ†’βˆžt \to \infty. In contrast to approaches based on noise-induced smoothing or elliptic regularity, our approach relies on dissipativity of the frozen fast dynamics and therefore permits degenerate diffusion coefficients. We prove a maximal LpL^p-estimate between the slow variable and the averaged ODE at late times, with the classical strong convergence rate of order 1/21/2. Under an additional decay condition on (Ξ΅t)tβ‰₯0(\varepsilon_t)_{t \ge 0}, this estimate implies that the slow variable is almost surely an asymptotic pseudo-trajectory of the averaged ODE. As a consequence, we obtain criteria for the identification of possible limit points and for convergence toward asymptotically stable equilibria for the slow variable by analyzing the dynamical behavior of the averaged equation.


Source: arXiv:2608.23462v1 - http://arxiv.org/abs/2608.23462v1 PDF: https://arxiv.org/pdf/2608.23462v1 Original Link: http://arxiv.org/abs/2608.23462v1

Please sign in to join the discussion.

No comments yet. Be the first to share your thoughts!

Access Paper
View Source PDF
Submission Info
Date:
Aug 25, 2026
Topic:
Mathematics
Area:
Mathematics
Comments:
0
Bookmark
Strong Averaging Principle and Long-Time Dynamics for Fast-Slow SDEs with Increasing Time-Scale Separation and Degenerate Noise | Researchia