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Rare earth doped M-type hexaferrites; ferromagnetic resonance and magnetization dynamics

机译:稀土掺杂M型六峰流体;铁磁共振和磁化动力学

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M-type hexagonal barium ferrites come in the category of magnetic material that plays a key role in electromagnetic wave propagation in various microwave devices. Due to their large magnetic anisotropy and large magnetization, their operating frequency exceeds above 50 GHz. Doping is a way to vary its magnetic properties to such an extent that its ferromagnetic resonance (FMR) response can be tuned over a broad frequency band. We have done a complete FMR study of rare earth elements neodymium (Nd) and samarium (Sm), with cobalt (Co) as base, doped hexaferrite nanoparticles (NPs). X-ray diffractometry, vibrating sample magnetometer (VSM), and ferromagnetic resonance (FMR) techniques were used to characterize the microstructure and magnetic properties of doped hexaferrite nanoparticles. Using proper theoretical electromagnetic models, various parameters are extracted from FMR data which play important role in designing and fabricating high-frequency microwave devices.
机译:M型六边形钡铁氧体进出磁性材料类别,其在各种微波器件中发挥着电磁波传播的关键作用。由于其磁各向异性大,磁化大,其工作频率超过50 GHz。掺杂是一种改变其磁性特性的一种方法,在这种程度上可以在宽频带上调谐其铁磁共振(FMR)响应。我们已经完成了对稀土元素钕(Nd)和钐(SM)的完整FMR研究,用钴(CO)为基础,掺杂的六氢胺纳米粒子(NPS)。 X射线衍射法,振动样品磁力计(VSM)和铁磁共振(FMR)技术用于表征掺杂六己二酯纳米颗粒的微观结构和磁性。使用适当的理论电磁模型,从FMR数据中提取各种参数,在设计和制造高频微波器件方面起着重要作用。

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