In strong fields the magnetization usually changes by rotation of the direction of magnetization. 在强磁场中,磁化往往由于磁化方向转向而改变。
Based on the local energy minimum via coherent rotation of the magnetic and classical thermal activation, magnetization processes of magnetic multilayered films with both the bilinear and biquadratic exchange couplings are investigated. 基于相干转动的局域能量极小模型和经典的热激活模型研究了包含二次、双二次耦合的磁性多层膜的磁化过程。
During consecutive hysteresis loops, the rotation of the pinning direction strongly depends on magnetization reversal mechanism of ferromagnet layer. The rotation of the pinning direction is the physical origin of training effect. 在连续磁滞回线测量中,钉扎方向的转动和铁磁层的磁化翻转的不对称性紧密关联,是磁锻炼效应的物理根源。
The experimental results show that the magnetic moment rotation in magnetization processes is helpful to improve the linearity of sensors. 实验结果显示材料磁化过程中的磁矩转动有利于提高传感器的线性度。
The temperature rising during irradiation resulted in the rotation of magnetization vector in single domain and the formation of reversal domain. 温度的变化主要引起单畴体内磁化矢量的转动及反向畴的形成,辐照时形成的内应力使磁体原有的磁化矢量方向发生偏转,导致了微细条状畴的形成。