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Dynamic, in situ optical, magnetic and magneto-optical monitoring of the growth of Co/Au and Pd/Co/Au multilayer systems

机译:动态,原位光学,磁和磁光监测Co / Au和Pd / Co / Au多层系统的生长

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The growth of magnetron sputtered Co/Au and Pd/Co/Au superlattices on Au and Pd buffer layers, deposited onto glass substrates, has been monitored optically and magneto-optically in real time, using rotating analyser ellipsometry and Kerr polarimetry, at a wavelength of 633 nm. The magneto-optical traces, combined with ex situ and in situ hysteresis loops, provide a detailed and informative fingerprint of the optical and magnetic properties of the films as they evolve during growth. For Co/Au, oscillations in the polar magneto-optical effect developed during the deposition of An overlayers on Co and these may be attributed to quantum well states. However, the hysteresis measurements show that the magnetic field required to maintain saturation magnetization throughout the experiment was larger than available in situ, introducing a degree of confusion concerning the interpretation of the data. This problem was overcome by the incorporation of Pd layers into the Co/Au structure, thereby eliminating variation in magnetic orientation during growth of the Au layers as a contributory factor to the observations.
机译:磁控溅射Co / Au和Pd / Co / Au超晶格在沉积在玻璃基板上的Au和Pd缓冲层上的生长,已通过旋转分析仪椭圆偏振法和Kerr偏振光法在一定波长下实时光学和磁光监测633 nm。磁光迹线与非原位和原位磁滞回线相结合,为薄膜在生长过程中的光学和磁性特性提供了详细而丰富的指纹。对于Co / Au,在Co上覆盖层沉积期间在极性磁光效应中产生的振荡,这些振荡可能归因于量子阱态。但是,磁滞测量结果表明,在整个实验过程中保持饱和磁化强度所需的磁场大于原位可用的磁场,这在数据解释方面引起了一定程度的混乱。通过在Co / Au结构中掺入Pd层克服了这个问题,从而消除了Au层生长过程中磁取向的变化,这是对观察结果的贡献。

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