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Electromagnetic properties of nickel-zinc and manganese-zinc ferrite doped opal matrices in millimeter waveband

机译:毫米波波段镍锌和锰锌铁氧体掺杂蛋白石基质的电磁性能

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Microwave properties of magnetic photonic crystals, namely, silica opal matrices doped with nickelzinc or manganese-zinc iron spinels have been investigated in the frequency range from 26 to 38 GHz. The experiments were carried out using two methods: 1) the measurements of microwave absorption in a cavity resonator and 2) electromagnetic wave penetration through a sample placed into a waveguide. It has been found that these magnetic nanocomposites show resonance-type dependence of the transmission coefficient versus magnetic field. Magnetic resonance spectra have been studied. The resonance variations in the nickel-zinc ferrite-doped nanocomposite are up to 70% that enables to use that material in magnetic field driven microwave devices.
机译:磁性光子晶体的微波特性,即掺有镍锌或锰锌铁尖晶石的二氧化硅蛋白石基质,已在26至38 GHz的频率范围内进行了研究。实验使用两种方法进行:1)测量谐振腔中微波的吸收; 2)电磁波穿过放置在波导中的样品的穿透。已经发现这些磁性纳米复合材料显示出透射系数对磁场的共振型依赖性。已经研究了磁共振光谱。掺杂镍锌铁氧体的纳米复合材料的共振变化高达70%,可以在磁场驱动的微波设备中使用该材料。

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