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Dynamics of wall and Bloch line motion using 3D simulations

机译:使用3D模拟的墙和Bloch线运动的动力学

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Three-dimensional numerical experiments have been performed on a stripe domain in a magnetic bubble garnet material to study the dynamics of vertical Bloch lines (VBLs). The authors have modeled a stripe with two domain walls at equilibrium, one wall containing a winding VBL pair and the other structureless. When a bias field pulse with 10 ns risetime is applied, the walls move together at 77 m/s and 33 m/s, with the VBLs moving at 178 m/s. Overshoot in the wall motion was observed and attributed to the relaxation of the horizontal Bloch lines (HBLs) formed in the structureless wall. Contours of the in-plane angle of the magnetization in the wall with the VBL pair distort during wall motion; however, it was possible to see some influence of HBL formation on VBL motion.
机译:已经在磁性气泡石榴石材料中的条纹区域上进行了三维数值实验,以研究垂直Bloch线(VBL)的动力学。作者对一条带两个平衡畴壁的条纹进行了建模,其中一个壁包含一个绕组VBL对,另一个壁无结构。当施加上升时间为10 ns的偏置场脉冲时,壁以77 m / s和33 m / s的速度一起移动,而VBL以178 m / s的速度移动。观察到墙体运动的过冲,并归因于在无结构墙体中形成的水​​平Bloch线(HBLs)的松弛。在壁运动期间,壁上磁化的平面内角度与VBL对的轮廓发生了扭曲;但是,有可能看到HBL形成对VBL运动的一些影响。

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