Tuning Ginzburg–Landau theory to quantitatively study thin ferromagnetic materials

Author:

Guruciaga Pamela C,Caballero Nirvana,Jeudy Vincent,Curiale Javier,Bustingorry Sebastian

Abstract

Abstract Along with experiments, numerical simulations are key to gaining insight into the underlying mechanisms governing domain wall motion in thin ferromagnetic systems. However, a direct comparison between numerical simulation of model systems and experimental results still represents a great challenge. Here, we present a tuned Ginzburg–Landau model to quantitatively study the dynamics of domain walls in quasi two-dimensional ferromagnetic systems with perpendicular magnetic anisotropy. This model incorporates material and experimental parameters and the micromagnetic prescription for thermal fluctuations, allowing us to perform material-specific simulations and at the same time recover universal features. We show that our model quantitatively reproduces previous experimental velocity-field data in the archetypal perpendicular magnetic anisotropy Pt/Co/Pt ultra-thin films in the three dynamical regimes of domain wall motion (creep, depinning and flow). In addition, we present a statistical analysis of the domain wall width parameter, showing that our model can provide detailed nano-scale information while retaining the complex behavior of a statistical disordered model.

Publisher

IOP Publishing

Subject

Statistics, Probability and Uncertainty,Statistics and Probability,Statistical and Nonlinear Physics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Depinning free of the elastic approximation;Physical Review B;2023-11-01

2. Field-dependent roughness of moving domain walls in a Pt/Co/Pt magnetic thin film;Physical Review B;2021-10-05

3. Degradation of domains with sequential field application;Journal of Statistical Mechanics: Theory and Experiment;2021-10-01

4. Curvature-driven ac-assisted creep dynamics of magnetic domain walls;Physical Review B;2021-06-24

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