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Magnetic and transport properties of epitaxial thin film MgFe2O4 grown on MgO (100) by molecular beam epitaxy

机译:通过分子束外延在MgO(100)上生长的外延薄膜MgFe2O4的磁性和输运性质

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摘要

Magnesium ferrite is a very important magnetic material due to its interesting magnetic and electrical properties and its chemical and thermal stability. Here we report on the magnetic and transport properties of epitaxial MgFe2O4 thin films grown on MgO (001) by molecular beam epitaxy. The structural properties and chemical composition of the MgFe2O4 films were characterized by X-Ray diffraction and X-Ray photoelectron spectroscopy, respectively. The nonsaturation of the magnetization in high magnetic fields observed for M (H) measurements and the linear negative magnetoresistance (MR) curves indicate the presence of anti-phase boundaries (APBs) in MgFe2O4. The presence of APBs was confirmed by transmission electron microscopy. Moreover, post annealing decreases the resistance and enhances the MR of the film, suggesting migration of the APBs. Our results may be valuable for the application of MgFe2O4 in spintronics.
机译:铁氧体镁由于其令人感兴趣的磁性和电学性质以及其化学和热稳定性而成为非常重要的磁性材料。在这里我们报告通过分子束外延在MgO(001)上生长的外延MgFe2O4薄膜的磁性和传输性质。用X射线衍射和X射线光电子能谱分别表征了MgFe2O4薄膜的结构和化学成分。对M(H)测量和高线性负磁阻(MR)曲线观察到的强磁场中的磁化强度不饱和,表明MgFe2O4中存在反相边界(APB)。通过透射电子显微镜确认APB的存在。此外,退火后降低了电阻并增强了薄膜的MR,表明APB迁移了。我们的结果对于在自旋电子学中应用MgFe2O4可能是有价值的。

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