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首页> 外文期刊>Journal of magnetism and magnetic materials >Correlation of the atomic structure, magnetic properties and microwave characteristics in substituted hexagonal ferrites
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Correlation of the atomic structure, magnetic properties and microwave characteristics in substituted hexagonal ferrites

机译:取代六方铁氧体的原子结构,磁性和微波特性的相关性

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摘要

Present paper describes variation of structure and magnetic properties in diamagnetically doped barium hexaferrites. Al3+ and In3+ diamagnetic ions were chosen for investigation of the correlation between the chemical composition, crystal structure, magnetic properties and microwave characteristics in BaFe12 xDIxO19 solid solutions. The changes of structure and electronic properties were investigated using neutron powder diffraction and Mossbauer spectroscopy. These data were used for discussion of the electromagnetic properties changes. It was demonstrated possibility of electromagnetic properties control in the samples. It was shown that all samples demonstrate correlation between electromagnetic properties and the level of chemical substitution. The transmission spectra of all the samples demonstrated a deep minimum in the frequency range 20-65 GHz which was associated with the natural ferromagnetic resonance (NFMR). Calculated data for electromagnetic absorption correlates well with experimental transmission spectra. External magnetic field leads to shift of the NFMR peak due to increase of magnetic anisotropy. It was concluded that the intrasublattice interactions were responsible for tailoring the magneto crystalline anisotropy and resonance parameters. (C) 2018 Elsevier B.V. All rights reserved.
机译:本论文描述了抗磁掺杂六价钡铁氧体的结构和磁性能的变化。选择Al3 +和In3 +反磁性离子来研究BaFe12 xDIxO19固溶体中化学成分,晶体结构,磁性和微波特性之间的相关性。用中子粉末衍射和莫斯鲍尔光谱研究了结构和电子性质的变化。这些数据用于讨论电磁性能的变化。证明了控制样品中电磁性能的可能性。结果表明,所有样品均显示出电磁性能与化学取代水平之间的相关性。所有样品的透射光谱在20-65 GHz频率范围内均显示出极小的最小值,这与自然铁磁共振(NFMR)有关。电磁吸收的计算数据与实验透射光谱密切相关。由于磁各向异性的增加,外部磁场导致NFMR峰移动。得出的结论是,亚晶格内相互作用负责调整磁晶各向异性和共振参数。 (C)2018 Elsevier B.V.保留所有权利。

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