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Critical Influence of Different Diamagnetic Ions on Electromagnetic Properties of BaFe12O19

Ceramics International(2018)SCI 2区SCI 1区

NAS Belarus | Natl Univ Sci & Technol MISiS | Joint Inst Nucl Res | South Ural State Univ | Natl Univ

Cited 106|Views15
Abstract
The correlation between the electromagnetic properties of BaFe12-xDxO19 (0.1 <= x <= 1.2) solid solutions (D = Al3+, In3+ and Ga3+) and the concentration of diamagnetic ions was investigated. The changes of electromagnetic properties of the investigated samples were explained using neutron powder diffraction and Mossbauer spectroscopy data. The diamagnetic ions with different ionic radii and electronic configurations were chosen. 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. The resonance frequency f(res) and amplitude were changed by the substitution type and level. With increasing the substitution concentration, the resonance frequency increases from 51 GHz to 61 GHz and decreases from 50.5 GHz to 27 GHz for Al- and In-substituted samples, respectively. More complicated concentration dependences of resonance characteristics were obtained for Ga-substituted samples in a narrow range of 49 50.5 GHz. The value of f(res) had a minimum around x = 0.6 and further increased to 50.5 GHz for x = 1.2. It was concluded that the intrasublattice interactions were responsible for tailoring the magneto crystalline anisotropy and resonance parameters. More detailed investigations would require the development of phenomenological model on the basis of the electronic structure using Goodenough-Kanamori approaches.
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Ceramics,Barium hexaferrites,Electromagnetic properties,Diamagnetic ions
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要点】:本文研究了BaFe12-xDxO19 (D = Al3+, In3+ 和 Ga3+) 固溶体中不同抗磁离子对电磁性质的影响,揭示了抗磁离子浓度与电磁性质之间的关联。

方法】:通过中子粉末衍射和 Mossbauer 谱学数据分析了样品电磁性质的变化。

实验】:使用20-65 GHz频率范围内的传输光谱,观察到所有样品在自然铁磁共振频率下均表现出深度最小值,Al-和In-取代样品的共振频率f(res)随着取代浓度的增加分别从51 GHz增加到61 GHz和从50.5 GHz降低到27 GHz,而Ga-取代样品在49-50.5 GHz范围内表现出更复杂的浓度依赖性,f(res)在x = 0.6时达到最小值,随后增加到x = 1.2时的50.5 GHz。