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Magnetic interactions in Fe films sputtered on nanochannel alumina

机译:纳米通道氧化铝上溅射的铁膜中的磁性相互作用

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We present in this work a study of the magnetic interactions observed in Fe films sputtered onto the surface of commercial porous nanochannel alumina. These films, which grow in a "network-like" structure, have been characterized by delta M plots, magnetic viscosity and activation volume as a function of film thickness (5 nm/spl les//spl phi//spl les/100 nm) and substrate pore size (20 nm, 100 nm and 200 nm average diameter). We have found a maximum in the remanent coercivity and a minimum in the interparticle interaction for a film thickness /spl phi//spl sim/20 nm for the three substrates. The behavior of the magnetic viscosity and the activation volume on the other hand is dependent on the pore size. We have interpreted our results in terms of the different porosity of the substrates, As the porosity is smaller for the substrates with smaller holes, the continuous film behavior is approached first because the pores fill in more rapidly.
机译:我们目前在这项工作中研究的是在溅射到商业多孔纳米通道氧化铝表面的铁膜中观察到的磁性相互作用。这些以“网状”结构生长的薄膜的特征在于δM图,磁粘度和活化体积随薄膜厚度的变化(5 nm / spl les // spl phi // spl les / 100 nm) )和底物孔径(平均直径20 nm,100 nm和200 nm)。我们发现,对于三种基材,膜厚度/ spl phi // spl sim / 20 nm,剩余矫顽力最大,颗粒间相互作用最小。另一方面,磁粘度和活化体积的行为取决于孔径。我们已经根据基材的不同孔隙率解释了我们的结果。由于孔隙较小的基材的孔隙率较小,因此首先要达到连续膜行为,因为孔的填充速度更快。

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