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Motion and Interaction of Magnetic Dislocations in Alternating Magnetic Field

机译:交变磁场中磁位错的运动和相互作用

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摘要

The behavior of magnetic dislocations (MDs) in an alternating harmonic magnetic field in iron garnets has been experimentally investigated. The results are presented for single-crystal plates in which the drift of domain walls is observed in fields of sound frequencies. It is found that MDs in a stripe domain structure are able to move not only along but also across domain walls. A pairwise interaction between magnetic dislocations when they approach each other to distances on the order of the sizes of the cores of MDs is revealed. The processes of the annihilation, mutual passing of magnetic dislocations through each other and overtaking are found. The features of the dynamic behavior of MDs are explained using a mechanism based on the presence of vertical Bloch lines in a structure of domain walls. MDs are formed at nucleation centers, and their nucleation field is lower than the drift-starting field, which corresponds to previously proposed dislocational mechanism of the drift. The dependencies of quantitative parameters of the drift and MDs on amplitude and frequency of the pumping field are determined. The behavior of MDs should be considered when analyzing the mechanisms for magnetization and temperature-dependent phase transitions in magnetic layers.
机译:实验研究了铁石榴石的交变谐波磁场中的位错(MDs)行为。给出了单晶板的结果,其中在声频场中观察到畴壁的漂移。发现条带域结构中的MD不仅可以沿域壁移动,而且可以跨域壁移动。揭示了当磁能错位彼此接近一定距离时,磁能级之间成对相互作用。发现了the灭,磁位错相互通过和超车的过程。使用基于畴壁结构中垂直布洛赫线的存在机制来解释MD的动态行为特征。 MD形成在成核中心,并且它们的成核场低于漂移开始场,这对应于先前提出的漂移的位错机制。确定漂移和MD的定量参数对泵浦场的幅度和频率的依赖性。分析磁性层中磁化和温度相关的相变机制时,应考虑MD的行为。

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