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Magnetisation reversal in cylindrical nickel nanobars involving magnetic vortex structure: A micromagnetic study

机译:圆柱形镍纳米棒中涉及磁涡结构的磁化反转:微磁研究

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摘要

A three-dimensional, Fast-Fourier-Transformed (3D-FFT) micromagnetic simulation was employed to study the magnetization reversal mechanisms in cylindrical nickel nanobars possessing magnetic vortices. Individual Ni nanobars of height 150250 nm with aspect ratio varying from 2.1 to 2.5 were considered, all of them supporting magnetic vortices domains. Magnetization reversal in these nanobars involves the vortex-creationannihilation (VCA) mechanism with an inversion symmetry feature observed mid-way during reversal process. The effect of incidence angle of externally applied field on overall magnetization reversal process is examined in detail. The corresponding variations in coercivity, squareness, exchange energy and vortex parameters are described by the micromagnetic study that can shed insights for building practical Ni nanobars magnetic nanostructures/devices.
机译:利用三维快速傅里叶变换(3D-FFT)微磁模拟研究了具有磁涡旋的圆柱形镍纳米棒中的磁化反转机理。考虑了纵横比从2.1到2.5变化的高度为150250 nm的单个Ni纳米棒,它们均支持磁涡旋域。这些纳米棒中的磁化反转涉及涡旋-创建an灭(VCA)机理,该机理具有在反转过程中途观察到的反转对称特征。详细研究了外加磁场的入射角对整个磁化反转过程的影响。微磁研究描述了矫顽力,矩形度,交换能量和涡旋参数的相应变化,可以为构建实用的Ni纳米棒磁性纳米结构/器件提供见识。

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