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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >The giant magnetoresistance effect of Fe-Al-O nano-structured granular films
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The giant magnetoresistance effect of Fe-Al-O nano-structured granular films

机译:Fe-Al-O纳米粒状膜的巨磁阻效应

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Fe40Al24O36 (atomic ratio) nano-structured granular films were prepared by rf reactive sputtering, and the microstructure, electrical and magnetic properties as well as the tunnelling magnetoresistance (TMR) effect were studied systematically. It is found that the samples consist of small Fe particles with the diameter around 2-4 nm separated by an Al2O3 dielectric matrix, and the conductance mechanism is thermally-activated tunnelling. The samples display superparamagnetic properties at room temperature. Considering the size distribution of metal particles, the magnetization and TMR curves can be fitted with the Langevin formula and the Inoue model quite well. TMR is caused by spin-dependent tunnelling, it is closely related to the structure and magnetic state of the samples. Under the optimal conditions, the TMR value reaches a maximum of 5.7% at room temperature under 1.6 T magnetic field. [References: 12]
机译:通过射频反应溅射法制备了Fe40Al24O36(原子比)纳米结构颗粒薄膜,系统地研究了其微观结构,电,磁性能以及隧穿磁阻效应。发现样品由直径为2-4 nm的小Fe颗粒组成,并被Al2O3介电基质隔开,并且电导机理是热激活隧穿。样品在室温下显示超顺磁性。考虑到金属颗粒的尺寸分布,磁化和TMR曲线可以很好地与Langevin公式和Inoue模型拟合。 TMR是由自旋相关的隧穿引起的,它与样品的结构和磁态密切相关。在最佳条件下,室温下在1.6 T磁场下,TMR值最大为5.7%。 [参考:12]

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