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Absorption and Dispersion in Porous and Anisotropic Polycrystalline Ferrites at Microwave Frequencies

机译:多孔和各向异性多晶铁氧体在微波频率下的吸收和扩散

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In polycrystalline ferrites the relaxation of ferromagnetic resonance is often considerably increased by the random variations in the orientation of the anisotropy fields in different grains and by the presence of pores. The magnitude of this relaxation has been calculated most often in terms of scattering to spin‐waves, and the theories have been tested experimentally by measurements of the ferromagnetic resonance linewidth as a function of frequency or sample shape. In this paper it is discussed how an effective linewidth W and shift S of the resonance field can be derived from a measurement of the tensor susceptibility χ+, over a wide range of the applied magnetic field at a given frequency. The measuring apparatus is described and experimental results are presented for Ni0.36Zn0.64Fe2O4 with porosities from 0.2% up to 19%, and for a dense material of NiMn0.05Fe1.95O4, at a frequency of 9005 MHz, and applied magnetic fields from 1500–8000 Oe. These results are compared with the predictions of the spin‐wave model. Spin‐wave effects are clearly observed in anisotropy broadening as well as in porosity broadening. However, the perturbation of the spin‐wave manifold itself, respectively, by the nonuniformity of the anisotropy fields and by the inhomogeniety of the static demagnetizing fields around a pore, must be taken into account. The dependence of the relaxation parameters S and W on the applied magnetic field is modified significantly by this perturbation, particularly in the case of porosity broadening.
机译:在多晶铁氧体中,由于不同晶粒中各向异性场方向的随机变化以及存在孔,铁磁共振的弛豫通常会大大增加。这种弛豫的幅度通常是根据对自旋波的散射来计算的,并且已经通过测量铁磁共振线宽随频率或样本形状的变化而对理论进行了实验验证。在本文中,我们将讨论如何在给定频率下,在宽范围的外加磁场下,通过测量张量磁化率χ+来得出有效的线宽W和共振场的位移S。描述了该测量设备,并给出了孔隙率为0.2%至19%的Ni0.36Zn0.64Fe2O4以及密度为NiMn0.05Fe1.95O4的致密材料的实验结果,其频率为9005 MHz, 1500–8000大江。将这些结果与自旋波模型的预测结果进行比较。在各向异性展宽和孔隙率展宽中清楚地观察到了自旋波效应。但是,必须分别考虑各向异性场的不均匀性和孔隙周围静态消磁场的不均匀性对自旋波流形本身的扰动。弛豫参数S和W对施加磁场的依赖性通过这种扰动得到了显着改变,特别是在孔隙扩大的情况下。

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    《Journal of Applied Physics》 |2009年第4期|P.1849-1860|共12页
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  • 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);
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