Magnetization reversal mechanism in FePt: Au granular films
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摘要: 構造了FePt:Au有序納米顆粒膜的微結構模型,利用微磁學模擬的方法研究了一系列不同Au含量的FePt:Au顆粒膜的磁學性質.對比實驗數據,分析反磁化過程可知:當反映Au含量的交換作用比例系數β>0.4時,FePt:Au顆粒膜的矯頑力隨β減小而增大,但增幅較小,磁化反轉為一致反轉;當β<0.3時,隨β的減小矯頑力迅速增大,磁化反轉一致性降低.分析指出,當FePt磁性顆粒之間間距約為3~4nm時,顆粒間的交換相互作用可以近似為零,磁化反轉為非一致反轉.Abstract: A microstructure model of ordered FePt:Au nanogranular films was constructed. The magnetization reversal mechanism of FePt:Au granular films with different percentages of non-magnetic Au were investigated by micro-magnetic simulation. The results show that the reversal mechanism significantly depends on the percentage of Au. As the interaction coefficient of proportionalityβ, which reflects the percentage of Au, is greater than 0.4, the reversal model is coherent and the coercive force increases slightly with reducing ft. But forβ〈 0.3, the coercive force increases quickly with reducing fl, and the consistency of magnetization reversal is weakened. It is estimated that as the space length between the FePt granulars varies from 3 nm to 4 nm, the interaction of granular exchange is near to zero and the magnetization reversal is incoherent.
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Key words:
- nanogranular film /
- microstructure model /
- micro-magnetism /
- reversal model
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