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首页> 外文期刊>Journal of Ceramic Processing Research. (Text in English) >Magnetic and magneto-optic properties of Bi:YIG film for a magneto-optic spatial light modulator
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Magnetic and magneto-optic properties of Bi:YIG film for a magneto-optic spatial light modulator

机译:BI的磁性和磁光性能:磁光空间光调制器的YIG膜

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摘要

In this study, in order to evaluate the optimal conditions of a garnet material for a magneto-optic spatial light modulator (MOSLM) application, bismuth substituted yttrium iron (Bi:YIG) films were fabricated by RF magnetron sputtering, and their magnetic, magneto-optic and optical properties were investigated dependent on the annealing temperature. With an increase of the annealing temperature, the magnetic, magneto-optic and optical properties were increased, and their maximum values were shown at 950 deg C and 850 deg C, respectively. From X-ray diffraction, energy dispersive X-ray spectroscopy, and atomic force microscope analyses, magnetic and magneto-optic properties were affected by the substitution and evaporation of Bi atoms and the variation of the composition, and the roughness of surface had an effect on the transmittance of Bi:YIG films. As an experimental result, we could think that the optimal annealing temperature is 900 deg C because the optimal condition for a MOSLM device should be taken into consideration in terms of all variable properties.
机译:在该研究中,为了评估磁光空间光调制器(MOSLM)应用的石榴石材料的最佳条件,通过RF磁控溅射和它们的磁性磁化制造了铋取代的钇铁(Bi:Yig)薄膜研究了光学性和光学性质,取决于退火温度。随着退火温度的增加,磁性,磁光和光学性质增加,其最大值分别显示在950℃和850℃下。从X射线衍射,能量分散X射线光谱和原子力显微镜分析,磁性和磁光性质受到BI原子的取代和蒸发的影响和组合物的变化,并且表面的粗糙度具有效果关于Bi:Yig薄膜的透射率。作为实验结果,我们可以认为最佳退火温度为900°C,因为应以所有可变性质考虑MOSLM器件的最佳条件。

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