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首页> 外文期刊>Technical physics >Peculiarities of the Giant Magnetoimpedance in Permalloy-Based Film Structures in the Important Temperature Range for Practical Applications
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Peculiarities of the Giant Magnetoimpedance in Permalloy-Based Film Structures in the Important Temperature Range for Practical Applications

机译:在实际应用的重要温度范围内悬胶基薄膜结构中巨型磁阻的特性

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摘要

Multilayer structures based on Fe19Ni81 films have been obtained by ion-plasma sputtering and investigated on an impedance spectroscopy apparatus equipped with a temperature unit. An increase in the magnetoimpedance ratios for the total impedance and its real part has been found for the multilayer structure (Cu/FeNi)(5)/Cu/(Cu/FeNi)(5) upon heating from 25 to 50A degrees C. The maximum of the giant magnetoimpedance ratio of the total impedance Delta Z/Z = 56% has been observed at a frequency of 80 MHz with a sensitivity of 18%/Oe, while the maximum of the real part Delta R/R = 170% was observed at the frequency of 10 MHz with the sensitivity of 46%/Oe. Magnetization and resistivity at the direct current have been found to depend insignificantly on the temperature and, hence, the relaxation mechanism due to the magnetoelastic anisotropy was proposed as the most probable mechanism of increasing the value and sensitivity of the magnetoimpedance effect.
机译:基于Fe19Ni81薄膜的多层结构已经通过离子等离子体溅射获得并研究在配备有温度单位的阻抗光谱装置上。 在加热25至50A度C时,已经发现了对于多层结构(Cu / Feni)(5)/ Cu /(5)的多层结构(Cu / Feni)(5)/ cu /(5)的磁阻测量比和其实际部分的增加。该 总阻抗达到Z / Z = 56%的巨磁阻率的最大值以80MHz的频率观察到,敏感性为18%/ OE,而实体部分ΔR/ r = 170%的最大值是 以10MHz的频率观察,灵敏度为46%/ OE。 已经发现直流电流的磁化和电阻率在温度下显着依赖于温度,并且因此提出了由于磁力弹性各向异性引起的弛豫机制是提高磁阻效应的值和敏感性的最可能机制。

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