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Study of magnetization reversal in submicron wires using the giant magnetoresistance effect

机译:利用巨磁阻效应研究亚微米线的磁化反转

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摘要

Magnetization reversal phenomena in submicron magnetic wire systems were investigated from magnetoresistance measurements. Wire arrays and also single wire samples consisting of two magnetic layers with different coercivities were prepared and the resistivity was measured by applying external magnetic fields. Owing to the non-coupled type of giant magnetoresistance effect, the resistivity of wires is enhanced in proportion to the relative area of antiparallel magnetization. It is demonstrated that the resistivity measurements can sensitively detect the magnetization reversal phenomena in submicron wires. The dynamic properties of domain walls in wire samples are studied and the velocity of domain wall propagation is estimated. [References: 14]
机译:通过磁阻测量研究了亚微米电磁线系统中的磁化反转现象。制备线阵列以及由具有不同矫顽力的两个磁性层组成的单线样品,并通过施加外部磁场来测量电阻率。由于非耦合类型的巨磁阻效应,导线的电阻率与反平行磁化的相对面积成比例地增加。结果表明,电阻率测量可以灵敏地检测亚微米导线中的磁化反转现象。研究了金属丝样品中畴壁的动力学特性,并估计了畴壁传播的速度。 [参考:14]

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