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Effect of Phase Transformations of a Metal Component on the Magneto-Optical Properties of Thin-Films Nanocomposites (CoFeZr)x (MgF2)100−x

机译:金属部件相变对薄膜纳米复合材料(COFEZR)X(MGF2)100-X的磁光性质的影响

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摘要

The results of complex studies of structural-phase transformations and magneto-optical properties of nanocomposites (CoFeZr)x (MgF2)100−x depending on the metal alloy content in the dielectric matrix are presented. Nanocomposites were deposited by ion-beam sputtering onto glass and glass-ceramic substrate. By studying the spectral and field dependences of the transversal Kerr effect (TKE), it was found that the transition of nanocomposites from superparamagnetic to the ferromagnetic state occurs in the region of xfm~30 at%, that corresponds to the onset the formation of ferromagnetic nanocrystals CoFeZr with hexagonal syngony in amorphous dielectric matrix of MgF2. With an increase of concentrations of the metal alloy for x > xfm, the features associated with structural transitions in magnetic granules are revealed in the TKE spectra. Comparison of the spectral and concentration dependences of TKE for nanocomposites on the glass and glass-ceramics substrates showed that the strongest differences occur in the region of the phase structural transition of CoFeZr nanocrystals from a hexagonal to a body-centered cubic structure at x = 38 at.% on the glass substrates and at x = 46 at.% on glass-ceramics substrates, due to different diffusion rates and different size of metal nanocrystals on amorphous glass substrates and more rough polycrystalline glass-ceramics substrates.
机译:提出了根据介电基质中的金属合金含量的纳米复合材料(COFEZR)X(MGF2)100-X的结构相变和磁光学性质的复杂研究结果。通过离子束溅射沉积纳米复合材料在玻璃和玻璃 - 陶瓷基板上。通过研究横向克尔效应(TKE)的光谱和场依赖性,发现从超顺磁性到铁磁性状态的纳米复合物的转变发生在XFM〜30at%的区域中,这对应于发起铁磁性的形成纳米晶体Cofezr与MgF2非晶介电基质中的六边形合成器。随着X> XFM的金属合金浓度的增加,在TKE光谱中显示了与磁性颗粒中的结构转变相关的特征。 TKE对玻璃和玻璃和玻璃纤维衬底上的纳米复合材料的光谱和浓度依赖性的比较显示,在X = 38处从六边形到身体中心立方结构的Cofezr纳米晶体的相结构转变区域中出现最强的差异在玻璃基板上的%,在X = 46处。%在玻璃陶瓷基材上,由于不同的扩散速率和不同的金属纳米晶体上的金属纳米晶体和更粗糙的多晶玻璃陶瓷基板。

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