Statistical Approach Based on the Stoner‒Wohlfarth Model for Switching Field in Misoriented Magnets Arrays

15 Pages Posted: 14 Aug 2023

See all articles by Donghyeon Lee

Donghyeon Lee

University of Ulsan - Department of Physics and Energy Harvest Storage Research Center

Donghyeon Han

Korea Advanced Institute of Science and Technology (KAIST)

I Suzuki

National Institute for Materials Science

Yukiko Takahashi

National Institute for Materials Science - Elements Strategy Initiative Center for Magnetic Materials (ESICMM)

Jungmin Park

Korea Advanced Institute of Science and Technology (KAIST)

Sanghoon Kim

University of Ulsan

Abstract

Stoner‒Wohlfarth model (S‒W model) is appreciate to explain the relationship between the external magnetic field and the magnetization reversal of a single magnetic domain. However, it is inappropriate for inhomogeneous magnetic films or bulk materials, such as granular and defective films, because the magnetization reversal of the films is affected by magnetic particles or grains which could have a different anisotropy for uniaxial magnetic anisotropy (UMA) of the films. In this paper, we propose a model based on the S‒W model to understand the magnetization switching behavior of magnetic films with misoriented grains. Our model considers the distribution effect of different anisotropies originating from magnetic defects or domains against the UMA of a magnetic thin film, and a Gaussian function is employed for the probability distribution of tilted anisotropy. Finally, we experimentally demonstrate that our model describes the magnetic switching behavior of a granular magnetic film (FePt-C) with perpendicular magnetic anisotropy. This study provides a new analytical method for the magnetization reversal in magnetic devices.

Keywords: Stoner-Wohlfarth model, Switching field, Inhomogeneous magnetic film, Probability distribution

Suggested Citation

Lee, Donghyeon and Han, Donghyeon and Suzuki, I and Takahashi, Yukiko and Park, Jungmin and Kim, Sanghoon, Statistical Approach Based on the Stoner‒Wohlfarth Model for Switching Field in Misoriented Magnets Arrays. Available at SSRN: https://ssrn.com/abstract=4540247 or http://dx.doi.org/10.2139/ssrn.4540247

Donghyeon Lee

University of Ulsan - Department of Physics and Energy Harvest Storage Research Center ( email )

Donghyeon Han

Korea Advanced Institute of Science and Technology (KAIST) ( email )

I Suzuki

National Institute for Materials Science ( email )

Tsukuba, 305-0047
Japan

Yukiko Takahashi

National Institute for Materials Science - Elements Strategy Initiative Center for Magnetic Materials (ESICMM) ( email )

Tsukuba
Japan

Jungmin Park (Contact Author)

Korea Advanced Institute of Science and Technology (KAIST) ( email )

Sanghoon Kim

University of Ulsan ( email )

Ulsan
Korea, Republic of (South Korea)

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