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Dependence of magnetic and microwave loss on evolving microstructure in yttrium iron garnet

机译:磁性和微波损耗对钇铁石榴石组织演变的影响

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摘要

The parallel magnetic and microwave loss dependence on microstructural evolutions in several polycrystalline yttrium iron garnet samples were studied in detail, focusing on the attendant occurrence of their relationships. In this study, polycrystalline YIG samples were synthesized by employing the mechanical alloying technique and sintering toroidal compacts at temperatures from 600 to 1400 °C. The samples were characterized for their evolution in crystalline phases, structure, microstructure, magnetic hysteresis parameters, microwave losses and electrical resistivity. The results showed an increasing tendency of the saturation magnetization with grain size, which is attributed to crystallinity increase in the grains. The M–H hysteresis loop results showed a transition from disordered-to-ordered magnetism which belongs to different magnetically dominant stages of formation. The starting appearance of room temperature ferromagnetic order suggested by the sigmoid-shaped loops seems to be dependent on crystallinity, phase purity and a sufficient number of large enough magnetic domain-containing grains having been formed in the microstructure. An increasing trend of transmission loss with grain size may be attributed to increment of loss contribution from hysteresis and domain wall resonance of the samples. The changes in crystallinity and microstructure, and the associated processes of microwave resonance and relaxation due to domain wall movements and damping of spin rotation contributes to the variations in transmission loss and ferromagnetic linewidth of the samples. The increased electrical resistivity while the microstructure was evolving is believed to strongly indicates improved phase purity and compositional stoichiometry.
机译:在几个多晶钇铁石榴石样品中,平行磁和微波损耗对微观结构演变的依赖性得到了详细研究,重点是它们之间伴随的关系。在这项研究中,通过使用机械合金化技术并在600至1400°C的温度下烧结环形压坯来合成多晶YIG样品。对样品的结晶相,结构,微结构,磁滞参数,微波损耗和电阻率进行了表征。结果表明,饱和磁化强度随晶粒尺寸的增加而增加,这归因于晶粒的结晶度增加。 M–H磁滞回线结果显示了从无序磁到有序磁的过渡,该磁属于有序的不同磁性主导阶段。由S形环表示的室温铁磁序的开始出现似乎取决于结晶度,相纯度以及在微结构中已经形成足够数量的足够大的含磁畴的晶粒。传输损耗随晶粒尺寸的增加趋势可能归因于样品的磁滞和畴壁共振造成的损耗贡献的增加。结晶度和微观结构的变化,以及由于畴壁运动和自旋旋转的阻尼而引起的微波共振和弛豫的相关过程,导致了样品的传输损耗和铁磁线宽的变化。人们认为,随着微观结构的发展,电阻率的增加强烈地表明了相纯度和组成化学计量的提高。

著录项

  • 来源
    《Journal of materials science》 |2018年第10期|8688-8700|共13页
  • 作者单位

    Department of Materials Technology, Faculty of Industrial Science and Technology, Universiti Malaysia Pahang;

    Materials Synthesis and Characterization Laboratory, Institute of Advanced Technology, Universiti Putra Malaysia;

    Department of Physics, Faculty of Science, Universiti Putra Malaysia;

    Department of Physics, Faculty of Science, Universiti Putra Malaysia;

    Materials Synthesis and Characterization Laboratory, Institute of Advanced Technology, Universiti Putra Malaysia;

    Materials Synthesis and Characterization Laboratory, Institute of Advanced Technology, Universiti Putra Malaysia,Kolej PERMATA Insan, Universiti Sains Islam Malaysia;

    Materials Synthesis and Characterization Laboratory, Institute of Advanced Technology, Universiti Putra Malaysia;

    Materials Synthesis and Characterization Laboratory, Institute of Advanced Technology, Universiti Putra Malaysia;

    Department of Materials Technology, Faculty of Industrial Science and Technology, Universiti Malaysia Pahang;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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