arXiv · 2505.10229
Strong and weak convergence rates for fully coupled multiscale stochastic differential equations driven by $\alpha$-stable processes
Abstract
We first establish strong convergence rates for multiscale systems driven by $\alpha$-stable processes, with analyses constructed in two distinct scaling regimes. When addressing weak convergence rates of this system, we derive four averaged equations with respect to four scaling regimes. Notably, under sufficient H\"{o}lder regularity conditions on the time-dependent drifts of slow process, the strong convergence orders are related to the known optimal strong convergence order $1-\frac{1}{\alpha}$, and the weak convergence orders are 1. Our primary approach involves employing nonlocal Poisson equations to construct ``corrector equations" that effectively eliminate inhomogeneous terms.
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Kun Yin. 2025-05-15. Strong and weak convergence rates for fully coupled multiscale stochastic differential equations driven by $\alpha$-stable processes. https://arxiv.org/abs/2505.10229
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