薄膜纳米复合材料(CoFeZr)x(MgF2)100−x的非线性电磁特性

IF 2.6 4区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
E. Domashevskaya, S. Ivkov, P. Seredin, Dmitry L. Goloshchapov, K. Barkov, S. Ryabtsev, Yrii G. Segal, A. Sitnikov, E. Ganshina
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引用次数: 0

摘要

本工作的目的是全面研究(CoFeZr)x(MgF2)100−x纳米复合材料(NCs)的可变原子组成和结构相状态对其非线性电子和磁/磁光性能的影响。在氩气氛中,通过离子束溅射复合靶材,在玻璃衬底上获得了微米厚的纳米复合材料层,其组成范围为x=9–51at.%。由NCs电阻的浓度依赖性确定的电阻渗滤阈值xper=34at.%的值与金属纳米晶体CoFeZr在MgF2电介质基体中的成核开始一致。在5.5kG的磁场中,当x=25at.%时,NCs的最大磁阻绝对值为2.4%,达到渗滤阈值。在磁光横向Kerr效应的浓度依赖性中出现了两个最大值,其中一个最大值在x=34at.%时对应于六方结构的CoFeZr合金纳米晶体的形成,而第二个最大值(x=45at.%)对应于纳米晶体从六方体中心结构向立方体中心结构的相变。(CoFeZr)x(MgF2)100−x系统在xfm=34at.%时的磁逾渗阈值与电阻逾渗阈值xper=34at。矫顽力的浓度依赖性表明,在金属合金x<30at.%的低含量下,NCs具有超顺磁性(Hc=0)。随着合金含量的增加,在磁和电阻渗滤阈值区域,NCs表现出磁软铁磁特性,并且其变化不会远远超过渗滤阈值,矫顽力的最大值Hc<30Oe。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear Electromagnetic Properties of Thinfilm Nanocomposites (CoFeZr)x(MgF2)100−x
The aim of this work is a comprehensive study of the effect of variable atomic composition and structural-phase state of (CoFeZr)x(MgF2)100−x nanocomposites (NCs) on their nonlinear electronic and magnetic/magneto-optical properties. Micrometer-thick nanocomposite layers on the glass substrates were obtained by ion-beam sputtering of a composite target in the argon atmosphere in a wide range of compositions x = 9–51 at·%. The value of the resistive percolation threshold, xper = 34 at·%, determined from the concentration dependencies of the electrical resistance of NCs, coincides with the beginning of nucleation of metallic nanocrystals CoFeZr in MgF2 dielectric matrix. The absolute value of maximum magnetoresistance of NCs is 2.4% in a magnetic field of 5.5 kG at x = 25 at·%, up to the percolation threshold. Two maxima appear in the concentration dependencies of magneto-optical transversal Kerr effect, one of which, at x = 34 at·%, corresponds to the formation of CoFeZr alloy nanocrystals of a hexagonal structure, and the second one at x = 45 at·% corresponds to the phase transition of nanocrystals from a hexagonal to a cubic body-centered structure. The magnetic percolation threshold in (CoFeZr)x(MgF2)100−x system at xfm = 34 at·%, with the appearance of a hysteresis loop and a coercive force of Hc ≈ 8 Oe, coincides with the resistive percolation threshold xper = 34 at·%. Concentration dependence of the coercive force showed that at low contents of metallic alloy x < 30 at·%, NCs are superparamagnetic (Hc = 0). With an increase of the alloy content, in the region of magnetic and resistive percolation thresholds, NCs exhibit a magnetically soft ferromagnetic character and do not change it far beyond the percolation threshold, with the maximum value of the coercive force Hc < 30 Oe.
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来源期刊
Magnetochemistry
Magnetochemistry Chemistry-Chemistry (miscellaneous)
CiteScore
3.90
自引率
11.10%
发文量
145
审稿时长
11 weeks
期刊介绍: Magnetochemistry (ISSN 2312-7481) is a unique international, scientific open access journal on molecular magnetism, the relationship between chemical structure and magnetism and magnetic materials. Magnetochemistry publishes research articles, short communications and reviews. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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