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Impedance model of metal-dielectric nanocomposites produced by ion-beam sputtering in vacuum conditions and its experimental verification for thin films of (FeCoZr)x(PZT)(100-x)

机译:真空条件下离子束溅射制备的金属电介质纳米复合材料的阻抗模型及其对(FeCoZr)x(PZT)(100-x)薄膜的实验验证

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摘要

The paper presents results of testing electric properties (resistance, capacity and phase angle in anequivalent parallel circuit) of ferromagnetic alloy-dielectric nanocomposites (FeCoZr)x(PZT)(100 x) producedby ion-beam sputtering in vacuum conditions. The measurements have been performed using alternating current within the frequency range of 50 Hz -1 MHz for measuring temperatures ranging from 77 K to 373 K. In nanocomposites (CoFeZr)x(PZT)(100 x), produced by ion beam sputtering using a beam of combined argon and oxygen ions, for x approaching the percolation threshold, frequency dependences of the phase angle 4 that resemble those occurring in RLC parallel circuits have been observed. In the low frequency area, the phase angle of 90 - 0 occurs. It corresponds to the capacitive type of conduction. In the high frequency area, the inductive type of conduction with 0 - 90 occurs. At the resonance frequency f0, characterized by the phase angle of 0 , the capacity value reaches its strong local minimum. A theoretical basis for a model of the AC hopping conduction for metal-dielectric nanocomposites has been developed and on that basis frequency dependences of the phase angle, resistance and capacitive current density components have been analyzed. The obtained theoretical and experimental results have been compared.
机译:本文介绍了在真空条件下通过离子束溅射制备的铁磁合金-介电纳米复合材料(FeCoZr)x(PZT)(100 x)的电性能(等效并联电路中的电阻,电容和相角)的测试结果。测量是使用50 Hz -1 MHz频率范围内的交流电进行的,测量温度范围为77 K至373K。在纳米复合材料(CoFeZr)x(PZT)(100 x)中,通过离子束溅射使用在x接近渗流阈值时,已观察到氩气和氧离子结合的离子束,类似于RLC并联电路中出现的相角的频率依赖性。在低频区域,相位角为90-0。它对应于电容性导电类型。在高频区域,会发生0-90的感应式导电。在以相位角0为特征的共振频率f0处,电容值达到其强局部最小值。已经开发出金属介电纳米复合材料交流跳跃传导模型的理论基础,并在此基础上分析了相角,电阻和电容性电流密度分量的频率依赖性。比较了获得的理论和实验结果。

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