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首页> 外文期刊>Russian physics journal >Resonance Characteristics for Microwire Pieces as Elements of Composite Materials
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Resonance Characteristics for Microwire Pieces as Elements of Composite Materials

机译:作为复合材料元素的微观件的共振特性

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摘要

The half-wave resonance of ultra-thin conductors produced by different technologies is investigated within 8.2-15.5 GHz frequency range using an open quasi-optical resonator. A comparison of the theoretical and experimental results show that for glass-coated and drawn microwires, both fabricated from alloys with specific conductivity of over 10(5) S/m, the experimental value of the microwire resonant length is less than the theoretical. Supposedly, this is due to the surface effect including the nanoscale transition layer of microwires. Dependence diagrams are obtained for microwires made of alloys with natural ferromagnetic resonance. It is shown that the half-wave length resonance of the latter is considerably longer than that of microwires with a similar value of specific conductivity, but without magnetic properties.
机译:使用开放的准光谐振器在8.2-15.5GHz频率范围内研究由不同技术产生的超薄导体的半波共振。 理论和实验结果的比较表明,对于玻璃涂覆和拉伸微射线,两者都是由具有超过10(5)次的特定导电性的合金,微线共振长度的实验值小于理论。 如图所示,这是由于包括纳米级转换层的微射线的表面效应。 获得由具有天然铁磁共振的合金制成的微线的依赖图。 结果表明,后者的半波长谐振比具有相似的特定导电性值的微线相当长,但没有磁性。

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