首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Tailoring the magnetic and magneto-transport properties of Pd/Co multilayers and pseudo-spin valve antidots
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Tailoring the magnetic and magneto-transport properties of Pd/Co multilayers and pseudo-spin valve antidots

机译:剪裁PD / CO多层和伪旋转阀解的磁性和磁传输性能

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摘要

Magnetic multilayers and pseudo-spin valves (PSVs) based on Pd/Co were tailored to present well-defined antiparallel magnetization states while maintaining a high perpendicular magnetic anisotropy (PMA). The magneto-electrical properties were measured as a function of intermediate Cu spacers to determine the values that optimize magnetoresistance and the Hall effect. Magnetic multilayers were also deposited on flat porous alumina membranes, forming antidots. The flat antidots shows good PMA and PSVs were studied in these systems for the first time, showing improved magnetoresistance and the extraordinary Hall effect (ERIE). Anomalous peaks were obtained in the EHE curves of the PSVs on both continuous films and 40nm antidots, with four well-defined remnant Hall resistance states.
机译:基于PD / CO的磁性多层和伪旋转阀(PSVS)被定制以呈现明确定义的反平行磁化状态,同时保持高垂直的磁各向异性(PMA)。 测量磁性电性能作为中间Cu间隔物的函数,以确定优化磁阻和霍尔效应的值。 磁性多层也沉积在平坦的多孔氧化铝膜上,形成防辐射剂。 平坦的反光点显示出良好的PMA,第一次在这些系统中进行了良好的PMA和PSV,显示出改善的磁阻和非凡的霍尔效应(ERIE)。 在连续薄膜和40nm反光点上的PSVS的EHE曲线中获得异常峰,具有四种明确的残余霍尔抵抗态。

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