Magnetization fluctuations and magnetic aftereffect probed via the anomalous Hall effect
Abstract
Taking advantage of the anomalous Hall effect, we electrically probe low-frequency magnetization fluctuations at room temperature in a thin ferromagnetic Pt/Co/AlO layer stack with perpendicular magnetic anisotropy. We observe a strong enhancement of the Hall voltage fluctuations within the hysteretic region of the magnetization loop. Analyzing both the temporal evolution of the anomalous Hall voltage and its frequency-dependent noise power density, we identify two types of magnetic noise: abrupt changes in the magnetic domain configuration, evident as Barkhausen-like steps in the Hall voltage time trace, yield a noise power density spectrum scaling with frequency as with . In contrast, quasi-stationary magnetization configurations are connected with a magnetic noise power density with an exponent . The observation of Barkausen steps and relaxation effects shows that the magnetic system is in a non-stationary state in the hysteresis region, such that the fluctuation-dissipation theorem cannot be expected to hold. However, the time-dependent change in the Hall voltage for constant magnetic field strength resembles the integrated noise power.
Keywords
Cite
@article{arxiv.2402.18436,
title = {Magnetization fluctuations and magnetic aftereffect probed via the anomalous Hall effect},
author = {Nadine Nabben and Giacomo Sala and Ulrich Nowak and Matthias Krüger and Sebastian T. B. Goennenwein},
journal= {arXiv preprint arXiv:2402.18436},
year = {2024}
}