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The centers of domain nucleation in hard magnetic TbFeCo-films with in-plane uniaxial anisotropy

机译:具有面内单轴各向异性的硬磁TbFeCo膜的畴核中心

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The domain development during the magnetization reversal is studied in TbFeCo films with field-induced in-plane anisotropy (K/sub in/ approximately=10/sup 5/ Jm/sup -3/) by means of a Kerr microscope equipped with an electronic image processing system. The nucleation of the domains does not take place at the film edge, but rather at defects which have a strongly deviating polar component of their easy axis. The coercivity of the films is determined by wall friction. The threshold against the nucleation of reversed domains is taken at a lower external field. Nevertheless, the hysteresis curves in the easy direction are very steep due to the viscous continuous motion of the walls after domain nucleation. The reversal preferably starts at line defects that re perpendicular to the easy axis because of the demagnetizing fields that support the reversal. A unique relationship between the polar M-components in defects and the in-plane M in the adjacent regions is caused by a tilt in the local easy anisotropy axis within the defect.
机译:利用配备有电子装置的Kerr显微镜,在具有场致面内各向异性(K / sub in /大约= 10 / sup 5 / Jm / sup -3 /)的TbFeCo薄膜中研究了磁化反转过程中的畴发展。图像处理系统。畴的成核不是在膜边缘发生,而是在缺陷中,其易轴的极性分量强烈偏离。薄膜的矫顽力由壁摩擦确定。在较低的外部磁场处采用了针对反向结构域成核的阈值。然而,由于磁畴成核后壁的粘性连续运动,沿易方向的磁滞曲线非常陡峭。反转优选地从垂直于易轴的线缺陷开始,这是因为支持反转的消磁场。缺陷中的极性M成分与相邻区域中的面内M之间的唯一关系是由缺陷内局部易各向异性轴的倾斜引起的。

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