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Complex Impedance Spectroscopy of Bi-substituted Yttrium Iron Garnet (YIG)

机译:双取代钇铁石榴石(YIG)的复阻抗谱

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The effects of Bi-substitution on the complex impedance spectra of yttrium iron garnet (YIG) were studied in this paper. The polycrystalline yttrium iron garnet Y_2BiFe_5O_(12) (YIG: Bi) and Y_3Fe_5O_(12) (YIG) samples were prepared by solid-reaction method. The complex impedance spectra were measured in the frequency range from 1 KHz to 100MHz at several temperatures between 210℃ and 500℃. The complex impedance sample shows that the YIG: Bi can be represented by double Cole-Cole semicircles, and the YIG can be represented by a single Cole semicircle. The physical structure of the specimen was visualized as comprising of small resistance grains separated by large resistance grain boundaries in accordance with the impedance spectra observations. The electrical processes in the sample were modeled in the form of an electrical equivalent circuit made up of a series combination of two parallel RC circuits attributed to grains and grain boundaries. The temperature dependence of bulk resistance indicated an evidence of Arrhenius-type thermally activated process, showing a close to linear variation up to a temperature of 740 K.
机译:研究了Bi取代对钇铁石榴石(YIG)复阻抗谱的影响。通过固相反应法制备了多晶钇铁石榴石Y_2BiFe_5O_(12)(YIG:Bi)和Y_3Fe_5O_(12)(YIG)样品。复阻抗谱是在210℃至500℃的几个温度下在1 KHz至100MHz的频率范围内测量的。复阻抗样本显示YIG:Bi可以用双Cole-Cole半圆表示,而YIG可以用单个Cole-半圆表示。根据阻抗谱观察,将样品的物理结构可视化为包括由大电阻晶粒边界隔开的小电阻晶粒。样品中的电气过程以等效电路的形式建模,该等效电路由两个并联的RC电路(由晶粒和晶界引起)的串联组合组成。体电阻的温度依赖性表明Arrhenius型热激活过程的证据,在740 K的温度下显示接近线性变化。

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