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MAGNETIZATION PROCESSES IN MESOSCOPIC SYSTEMS: NUCLEATION, MAGNETIZATION REVERSAL AND HYSTERESIS

机译:介观系统中的磁化过程:成核,磁化逆转和滞后

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The magnetization nucleation mechanisms taking place in "perfect" submicronic cobalt dots obtained by means of 3D Micromagnetic simulations are shown. Attention is focused on the study of the transition from parallel-to-plane to perpendicular-to-plane magnetization occurring as the thickness of the dot is increased. Simulations show different nucleation and magnetization reversal mechanisms as thickness varies. For a 35 nm dot, nucleation of stripe domains takes place, these domains bending as a result of the need for a lateral flux closure when the applied field is reduced to zero. For 25 nm thick dots no stripe domains are present and a full in-plane magnetization configuration has been obtained for which flux closure takes place with the formation of two distorted vortices at both sides of the dot.
机译:示出了通过3D微磁性模拟获得的“完美”亚微米钴点中进行的磁化成核机制。注意,随着点的厚度增加,关注从平行于平行平行于平行于平行于平行到平面磁化的研究。仿真显示出不同的成核和磁化反转机制,厚度变化。对于35nm点,在施加的场减小到零时,将发生条纹域的成核,因此由于需要横向磁通闭合而弯曲。对于25nm厚点,没有条带结构域并且已经获得了全面的面内磁化配置,其中磁通封闭在点的两侧形成两个扭曲的涡流。

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