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Numerical micromagnetics of small particles

机译:小颗粒的数值微磁学

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The results of applying the authors' micromagnetic code to a homogeneous spherical particle that is large enough to support inhomogeneous magnetization are given. For smaller particles, magnetization reversal is by coherent rotation. Larger particles initially exhibit curling as the applied magnetic field is reduced from a saturating value. Then one of two new behaviors is observed. For weak crystalline anisotropy, the axis of the curling state rotates and bends, and the magnetization reversal process is reversible, or nearly so. For strong crystalline anisotropy, a sudden discontinuous transition occurs to a vortex state with axis perpendicular to the anisotropy axis, and the vortex moves across the particle as reversal of the applied magnetic field continues. The formation and disappearance of the vortex are irreversible, but all other aspects of the process are reversible.
机译:给出了将作者的微磁代码应用于足够大以支持不均匀磁化的均匀球形粒子的结果。对于较小的颗粒,通过相干旋转来反转磁化强度。随着施加的磁场从饱和值减小,较大的粒子最初会出现卷曲。然后观察到两种新行为之一。对于弱的晶体各向异性,卷曲状态的轴旋转并弯曲,并且磁化反转过程是可逆的,或者几乎是可逆的。对于强的晶体各向异性,突然发生了不连续的过渡,形成了涡旋状态,其轴垂直于各向异性轴,并且随着所施加磁场的不断反转,涡旋在整个粒子上移动。涡旋的形成和消失是不可逆的,但是该过程的所有其他方面都是可逆的。

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