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Study on the Magnetization Dynamics of Ni–Fe Dot Arrays Estimated by the CPW-FMR Measurement Method

机译:CPW-FMR测量方法估算的镍铁点阵磁化动力学研究

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This paper describes the magnetization dynamics of Ni–Fe dot array estimated by the ferromagnetic measurement with the coplanar waveguide. The magnetic configuration of the dot changes from a multi-domain to a closure domain as the dot size decreases. The switching field at which a single domain is formed increases with the dot size reduction, which may be attributed to the enhanced magnetostatic energy. On the other hand, the damping constant decreases monotonically from 0.029 to 0.012 for the major axis length , and their values are higher than that of the Ni–Fe film (). The reason for these differences is that the demagnetization field distribution near the dot edge becomes inhomogeneous with the dot size reduction. On the basis of these results, it is revealed that the extrinsic factor, such as the inhomogeneous demagnetization field distribution, strongly influences on the damping constant. These results also suggest that the correlation with the magnetic configuration of the dot is one of the most important to understand the magnetization dynamics in submicrometer-sized magnets in detail.
机译:本文描述了通过共面波导的铁磁测量估算的Ni-Fe点阵列的磁化动力学。随着点尺寸的减小,点的磁性结构从多畴变为闭合畴。形成单个畴的开关场随着点尺寸的减小而增加,这可以归因于静磁能的提高。另一方面,对于主轴长度,阻尼常数从0.029到0.012单调降低,并且其值高于Ni-Fe膜的阻尼常数()。这些差异的原因是,随着点尺寸的减小,点边缘附近的退磁场分布变得不均匀。从这些结果可以看出,外在因素,例如不均匀的退磁场分布,对阻尼常数有很大的影响。这些结果还表明,与点的磁性构型的相关性是详细了解亚微米级磁体中磁化动力学的最重要条件之一。

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