$_{2}$ Magnetic Measurements of RE-Doped Cobalt Ferrite Thin Films
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Magnetic Measurements of RE-Doped Cobalt Ferrite Thin Films

机译:稀土掺杂钴铁氧体薄膜的磁测量

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Cobalt ferrite is a ferrimagnetic material with properties which support its use in different types of devices. In bulk form CoFe $_{2}$O $_{4}$ presents the highest magnetostriction coefficient relative to other ferrites making it a good candidate for sensors and actuators. Due to the industries miniaturization trend, several research groups focused their study on obtaining novel thin films with high magnetostriction coefficient. The aim of this work was to investigate the influence of the substrate temperature and rare earth addition on the properties of cobalt ferrite thin films deposited by pulsed laser deposition. CoFe $_{2}$O $_{4}$, CoFe $_{1.8}$Gd $_{0.2}$O $_{4}$ and CoFe $_{1.8}$La $_{0.2}$O $_{4}$ thin films were deposited using an Nd–YAG laser (532 nm) with a 10 Hz repetition rate and 10 ns pulse duration. The target-substrate distance of 2.5 cm and laser fluence of 10 J/cm$^{2}$ were kept constant. The substrate temperature was varied from 200 $^{circ}$C to 600 $^{circ}$C. The structural properties of the thin films obtained by Raman spectroscopy and scanning electron microscopy indicated the format- on of a single cobalt ferrite structure. Hysteresis loops for both in-plane and out-of-plane configuration were obtained using a vibrating sample magnetometer. These results showed an increase in coercive field and maximum magnetization as the substrate temperature was raised from 200 $^{circ}$C to 400 $^{circ}$C. Vibrating sample magnetometer measurements of the cobalt ferrite thin film deposited at 400 $^{circ}$ C revealed a tendency of the particles to a perpendicular magnetic arrangement.
机译:铁酸钴是一种亚铁磁性材料,其特性可支持其在不同类型的设备中的使用。散装形式CoFe $ _ {2} $ O $ _ {4} $ 具有相对于其他铁氧体而言最高的磁致伸缩系数,使其成为传感器和执行器的理想之选。由于行业的小型化趋势,几个研究小组将他们的研究集中在获得具有高磁致伸缩系数的新型薄膜上。这项工作的目的是研究衬底温度和稀土添加对通过脉冲激光沉积沉积的钴铁氧体薄膜性能的影响。 CoFe $ _ {2} $ O $ _ {4} $ ,CoFe $ _ {1.8} $ Gd $ _ {0.2} $ O $ _ {4} $ 和CoFe $ _ {1.8} $ La $ _ {0.2} $ O $ _ {4} $ 使用Nd-YAG激光(532 nm)以10 Hz的重复频率和10 ns的脉冲持续时间沉积薄膜。保持2.5 cm的目标基板距离和10 J / cm的激光通量。 $ ^ {2} $ 保持恒定。底物温度从200 $ ^ {circ} $ C到600 Notation =“ TeX”> $ ^ {circ} $ C。通过拉曼光谱和扫描电子显微镜获得的薄膜的结构性质表明了单钴铁氧体结构的形成。使用振动样品磁力计获得平面内和平面外配置的磁滞回线。这些结果表明,随着基板温度从200 $ ^ {circ} $ C升高,矫顽场和最大磁化强度均增加到400 $ ^ {circ} $ C。振动样品磁力计对沉积在400 $ ^ {circ} $ C处的钴铁氧体薄膜的测量揭示了颗粒的趋势垂直的磁性排列。

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