Variational methods for a singular SPDE yielding the universality of the magnetization ripple

Author:

Ignat Radu1,Otto Felix2,Ried Tobias2,Tsatsoulis Pavlos2

Affiliation:

1. Institut de Mathématiques de Toulouse & Institut Universitaire de France, UMR 5219 Université de Toulouse, CNRS, UPS IMT Toulouse Cedex 9 France

2. Max‐Planck‐Institut für Mathematik in den Naturwissenschaften Inselstraße 22 Leipzig Germany

Abstract

AbstractThe magnetization ripple is a microstructure formed in thin ferromagnetic films. It can be described by minimizers of a nonconvex energy functional leading to a nonlocal and nonlinear elliptic SPDE in two dimensions driven by white noise, which is singular. We address the universal character of the magnetization ripple using variational methods based on Γ‐convergence. Due to the infinite energy of the system, the (random) energy functional has to be renormalized. Using the topology of Γ‐convergence, we give a sense to the law of the renormalized functional that is independent of the way white noise is approximated. More precisely, this universality holds in the class of (not necessarily Gaussian) approximations to white noise satisfying the spectral gap inequality, which allows us to obtain sharp stochastic estimates. As a corollary, we obtain the existence of minimizers with optimal regularity.

Funder

Isaac Newton Institute for Mathematical Sciences

Engineering and Physical Sciences Research Council

Publisher

Wiley

Subject

Applied Mathematics,General Mathematics

Reference30 articles.

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