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Interdiffusion in Fe/Pt Multilayer Thin Films

机译:Fe / Pt多层薄膜中的互扩散

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摘要

Interdiffusion in Fe/Pt multilayer thin films has been studied. [Fe(1nm)/Pt(1.5nm)]20 multilayers were prepared by DC magnetron sputtering technique and subsequently annealed at temperatures of 543 - 633K in vacuum lower than 10-6 torr. X-ray diffraction (XRD) studies on these multilayer systems revealed the inlerdiflusion coefficients from slope of the best straight line fit of first peak intensity versus annealing time. The temperature dependence of interdiffusion in the range of 543 - 633K can be described by D=4.98*10-24 exp (0.88eV/kT) m2S-1. The coercivity, measured by Vibrating Sample Magnetometer, of the multilayer with annealing time at 603K increased, which is believed to the increase of surface roughness by interdiffusion at the interfaces of Fe and Pt multilayers, enhancement of composition gradient; and/or formation of Fe-Pt reaction phase at the interlace of Fe and Pt.
机译:已经研究了Fe / Pt多层薄膜中的相互扩散。 [Fe(1nm)/ Pt(1.5nm)] 20多层通过直流磁控溅射技术制备,然后在543-633K的温度下于低于10-6托的真空中退火。对这些多层系统的X射线衍射(XRD)研究显示,第一峰强度与最佳退火时间的最佳直线拟合斜率的不扩散系数。互扩散的温度依赖性在543-633K范围内,可以用D = 4.98 * 10-24 exp(0.88eV / kT)m2S-1来描述。通过振动样品磁强计测得的多层矫顽力随退火时间在603K的增加而增加,这被认为是由于在Fe和Pt多层界面处的相互扩散而增加了表面粗糙度,从而提高了成分梯度。在Fe和Pt的交织处形成和/或形成Fe-Pt反应相。

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