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(07C104) Surface morphologies and magnetic properties of Fe and Co magnetic thin films on polyethylene naphthalate organic substrates

机译:(07C104)聚乙二萘二甲酸乙烯萘甲酸亚烷基有机基材的Fe和Co磁性薄膜的表面形态和磁性

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We have studied the surface morphologies and magnetic properties of Fe and Co thin films evaporated on polyethylene naphthalate (PEN) organic substrates toward the fabrication of spin quantum cross devices. As a result, the surface roughnesses of Co (6.1 nm)/PEN and Co (12nm)/PEN are as small as 0.1 and 0.09 nm, respectively, corresponding to less than one atomic layer, in the same scanning scale as the thickness. As for the magnetic properties, the coercive force of the Co/PEN shows the constant value of 2kA/m upon decreasing the Co thickness from 35 to 10 nm, and it increases up to 7kA/m upon decreasing the Co thickness from 10 to 5nm. It decreases when the Co thickness is less than 5 nm. These results can be explained by the competition between the shape magnetic anisotropy and the induced magnetic anisotropy.
机译:我们已经研究了在聚萘甲酸亚萘甲酸亚萘甲酸亚萘甲酸亚萘甲酸亚甲酸乙烯(PEN)有机基板上朝向旋转量子交叉装置的制造的Fe和Co薄膜的表面形态和磁性。结果,CO(6.1nm)/笔和CO(12nm)/笔的表面粗糙度分别为0.1和0.09nm,与厚度相同的扫描刻度,分别对应于少于一个原子层。至于磁性,Co /笔的矫顽力显示在减少35至10nm时2kA / m的恒定值,并且在将Co厚度从10到5nm降低时,高达7ka / m 。当CO厚度小于5nm时,它会降低。这些结果可以通过形状磁各向异性和诱导磁各向异性之间的竞争来解释。

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