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Wei, Jinwu; Zhu, Zengtai; Feng, Hongmei; Du, Jinlu; Liu, Qingfang; Wang, Jianbo, E-mail: wangjb@lzu.edu.cn2015
AbstractAbstract
[en] Permalloy films with different thickness were prepared for comparison, and the dynamic properties of the stripe domains were investigated by using a vector network analyzer ferromagnetic resonance (VNA-FMR) technique. A top-down approach was used to control the thickness of the films. In the measurement of permeability spectra, an applied magnetic field H _a_p_p was employed parallel and perpendicular to the stripe domains, respectively. Dynamic pseudo-uniaxial anisotropy fields are derived. In order to explain the anisotropy variation of permalloy films, a theoretical model has been proposed, and the result shows that the pseudo-uniaxial anisotropy can be attributed to the contributions of saturation magnetization, exchange interaction, perpendicular anisotropy, and film thickness. In addition, with the increase of H _a_p_p, the stripe domains gradually rotate towards the direction of the applied field, which can be clearly observed by magnetic force microscopy. Moreover, the dynamic permeability spectra exhibit a rhythmic variation dependent on the rotation of the stripe domains, i.e. the relationship between the rotational stripe domains and resonance frequency. (paper)
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Available from http://dx.doi.org/10.1088/0022-3727/48/46/465001; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
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