Investigation of the Magnetic Properties of Amorphous Multilayer Nanostructures [(CoFeB)60C40/SiO2]200 and [(CoFeB)34(SiO2)66/C]46 by the Transversal Kerr Effect

材料科学 无定形固体 合金 复合数 克尔效应 渗透(认知心理学) 凝聚态物理 金属 铁磁性 非晶态金属 复合材料 冶金 结晶学 物理 非线性系统 神经科学 生物 化学 量子力学
作者
Е. А. Ганьшина,В. В. Гаршин,N. S. Builov,Nikolay N. Zubar,А. В. Ситников,É. P. Domashevskaya
出处
期刊:Kondensirovannye sredy i mežfaznye granicy [Voronezh State University]
卷期号:22 (4): 438-445
标识
DOI:10.17308/kcmf.2020.22/3114
摘要

Magnetic properties in amorphous multilayer nanostructures [(CoFeB)60C40/SiO2]200 and [(CoFeB)34(SiO2)66/C]46 with different content of the CoFeB magnetic alloy in metal-composite layers and inverse location of non-metallic phases C and SiO2 in composite layers or in interlayers, were investigated by magneto-optical methods in the transversal Kerr effect (TKE) geometry.Using the spectral and field dependences of the transversal Kerr effect TKE, it has been established that in the samples of both magnetic multilayer nanostructures (MLNS) the magneto-optical response and magnetic order are determined by the phase composition of the composite layers.In samples of MLNS [(CoFeB)60C40/SiO2]200 with a post-percolation content of metal clusters in metal-composite layers, the maximum of absolute TKE values decrease by about 2.5 times compared with the initial amorphous Co40Fe40B20 alloy, while the field dependences of TKE in samples of this MLNS has features that are characteristic of soft ferromagnets.In samples of MLNS [(CoFeB)34(SiO2)66/C]46 with a pre-percolation content of metal clusters in the oxide SiO2–x matrix of metal-composite layers, the TKE spectral dependences fundamentally differed from the TKE of the initial amorphous Co40Fe40B20 alloy both in shape and sign. 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