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Induced torsion effects in microwave structures with magnetoelectric fields

机译:具有电磁场的微波结构中的感应扭转效应

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摘要

At ferromagnetic-resonance frequencies, in small ferrite samples so-called magnetic-dipolar-mode oscillations can be excited. The near fields in vacuum, originated from a ferrite disk with these oscillations, are unidirectional rotating fields. When a thin metal wire is placed above such disk, unique torsion electric currents are induced. We analyze analytically these torsion effects. The torsion currents create the fields with unique topology. The shown results could be useful for development of microwave microscopy of chiral biological structures.
机译:在铁磁谐振频率下,在小的铁氧体样品中,可以激发所谓的磁偶极模式振荡。真空中的近场源自具有这些振荡的铁氧体圆盘,是单向旋转场。当将细金属丝放置在此类磁盘上方时,会感应出独特的扭转电流。我们分析分析这些扭转效应。扭转电流产生具有独特拓扑的磁场。所示结果可能对手性生物结构的微波显微镜的开发有用。

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