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Tailoring magnetic properties of multicomponent layered structure via current annealing in FePd thin films

机译:通过电流退火在FePd薄膜中调整多层复合结构的磁性能

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Multicomponent layered systems with tailored magnetic properties were fabricated via current annealing from homogeneous Fe67Pd33 thin films, deposited via radio frequency sputtering on Si/SiO2 substrates from composite target. To promote spontaneous nano-structuring and phase separation, selected samples were subjected to current annealing in vacuum, with a controlled oxygen pressure, using various current densities for a fixed time and, as a consequence, different phases and microstructures were obtained. In particular, the formation of magnetite in different amount was observed beside other iron oxides and metallic phases. Microstructures and magnetic properties evolution as a function of annealing current were studied and interpreted with different techniques. Moreover, the temperature profile across the film thickness was modelled and its role in the selective oxidation of iron was analysed. Results show that is possible to topologically control the phases formation across the film thickness and simultaneously tailor the magnetic properties of the system.
机译:通过均相的Fe67Pd33薄膜通过电流退火,通过射频溅射从复合靶材沉积在Si / SiO2衬底上,制得具有定制磁性的多组分分层系统。为了促进自发的纳米结构和相分离,将选定的样品在真空中,受控的氧气压力下进行电流退火,并在固定时间内使用各种电流密度进行操作,结果获得了不同的相和微观结构。尤其是,除其他氧化铁和金属相以外,还观察到了不同数量的磁铁矿形成。研究和解释了不同结构和磁性能随退火电流的变化。此外,对整个薄膜厚度的温度曲线进行了建模,并分析了其在铁的选择性氧化中的作用。结果表明,可以在拓扑上控制跨膜厚度的相形成,并同时调整系统的磁性能。

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