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首页> 外文期刊>Physica, B. Condensed Matter >Origin of the exchange bias training effects in magnetically coupled soft/hard synthetic bilayers at low temperature
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Origin of the exchange bias training effects in magnetically coupled soft/hard synthetic bilayers at low temperature

机译:低温下磁耦合软/硬合成双层中交换偏压训练作用的起源

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摘要

Hysteresis loops of the nanoscale magnetic layer Co90Fe10 and Ni81Fe19 and bilayer Co90Fe10/Ni81Fe19 and Ni81Fe19/Co90Fe10 films were measured as a function of external dc magnetic Field and the thickness dependence of these Films were plotted as a function of temperature. Time evolution of the minor/middle/major hysteresis loops of 5/5 nm-thick Ni81Fe19/Co90Fe10 monolayer have been observed at 10 K. The spin valve, exchange bias training and Barkhausen effects for magnetic layer and bilayer films have been analysed at various temperatures, thicknesses and different orientations according to the substrate. The exchange-bias training effects have been observed only in positive magnetization region. Origin of the exchange-bias training effects and asymmetric hysteresis loops are related to the relaxation mechanism of a pinning layer in magnetically coupled soft/hard bilayers. (C) 2014 Elsevier B.V. All rights reserved
机译:测量了纳米级磁性层Co90Fe10和Ni81Fe19以及双层Co90Fe10 / Ni81Fe19和Ni81Fe19 / Co90Fe10膜的磁滞回线,这些磁滞回线是外部dc磁场的函数,并且绘制了这些膜的厚度依赖性与温度的关系。在10 K下观察到5/5 nm厚的Ni81Fe19 / Co90Fe10单层的次/中/主要磁滞回线的时间演化。已在各种温度下分析了自旋阀,交换偏压训练和磁性层和双层膜的巴克豪森效应温度,厚度和根据基材的不同方向。仅在正磁化区域中观察到了交换偏置训练效果。交换偏置训练效应和不对称磁滞回线的起源与磁耦合软/硬双层中钉扎层的松弛机制有关。 (C)2014 Elsevier B.V.保留所有权利

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