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NiFe纳米线磁化反转机制的微磁模拟
引用本文:董凯锋,杨晓非,鄢俊兵,晋芳,程伟明,程晓敏.NiFe纳米线磁化反转机制的微磁模拟[J].磁性材料及器件,2008,39(5).
作者姓名:董凯锋  杨晓非  鄢俊兵  晋芳  程伟明  程晓敏
作者单位:华中科技大学,电子科学与技术系,湖北武汉,430074
基金项目:国家自然科学基金,国家自然科学基金
摘    要:通过微磁模拟手段研究了不同形状参量的坡莫合金纳米线的反磁化机制.研究结果表明:不同颗粒尺寸时,磁化反转过程中不同阶段磁体的磁矩分布情况不一样,但整个磁化反转过程为多畴反转的过程.同时,矫顽力随着纳米线长径比的增大而减小,相同长径比下,颗粒直径大的纳米线矫顽力大,这主要与磁化反转机理有关.在磁化反转中,形状各向异性占有绝对的主导地位.

关 键 词:NiFe纳米线  微磁学模拟  磁化反转机制  矫顽力

Micromagnetic Simulation of Magnetization Reversal Mechanism in NiFe Nanowires
DONG Kai-feng,YANG Xiao-fei,YAN Jun-bing,JIN Fang,CHENG Wei-ming,CHENG Xiao-min.Micromagnetic Simulation of Magnetization Reversal Mechanism in NiFe Nanowires[J].Journal of Magnetic Materials and Devices,2008,39(5).
Authors:DONG Kai-feng  YANG Xiao-fei  YAN Jun-bing  JIN Fang  CHENG Wei-ming  CHENG Xiao-min
Abstract:The magnetization reversal mechanism of NiFe nanowires with different shape parameters were investigated by micromagnetic simulation.The results show that when the grain size changes,the distribution of magnetic moments at different steps during the magnetization reversal is different,but the whole course is a multidomain reversal model.The coercivity decreases as the ratio of nanowires length to grain diameter increases,and with the same ratio,the nanowire with larger grain diameter has larger coercivity.This is mainly related to the magnetization reversal mechanism.During the magnetization reversal course,the shape anisotropy is dominant.
Keywords:NiFe nanowires  micromagnetic simulation  magnetization reversal mechanism  coercivity
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