NMR Spin-Echo Study of the Domain Wall Pinning in Cobalt Micropowders

T. Gavasheli, G. Mamniashvili, G. Ghvedashvili, T. Gegechkori
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Abstract

The pinning force of domain walls was studied by the NMR two-pulse spin-echo method using the action of an additional magnetic video-pulse. It is shown that the pinning force value Ho is inversely proportional to the duration $\tau_{\mathrm{m}}$ of the magnetic video-pulse. In addition, the area of the magnetic video-pulse $A_{m}=H_{0}\ \tau_{m}$ turned out to be the constant for all threshold durations of the magnetic video-pulse. The dependence of the pinning force $H_{0}$ on the external magnetic field $H_{\mathrm{e}}$ is also studied. It is shown that up to 3 kOe, a linear dependence of $H_{0}$ on $H_{\mathrm{e}}$ is observed. This indicates that, as $H_{\mathrm{e}}$ increases, the domain walls are distributed over positions corresponding to the stronger pinning centers.
钴微粉畴壁钉钉的核磁共振自旋回波研究
采用核磁共振双脉冲自旋回波法,在附加磁视频脉冲的作用下研究了畴壁的钉住力。结果表明,钉住力值Ho与磁视频脉冲持续时间$\tau_{\ mathm {m}}$成反比。此外,磁视频脉冲的面积$A_{m}=H_{0}\ \tau_{m}$是磁视频脉冲所有阈值持续时间的常数。研究了外加磁场H_{\ mathm {e}}$对钉钉力H_{0}$的依赖关系。结果表明,在3 k以内,$ h_bb_0 $对$ h_{\ math_m {e}}$是线性相关的。这表明,随着$H_{\ mathm {e}}$的增大,畴壁分布在与较强钉钉中心对应的位置上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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