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Effective Co-rich ternary CoFeNi alloys for spintronics application

机译:用于闪铜器施用的有效的共富富烯酮合金

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The dependence of crystal structure, hysteresis properties and magnetoresistance on composition of ternary CoFeNi alloy has been studied for glass/TagNi(80)Fe(20))(60)Cr-40/[CoFeNi/Cu(2.2 nm)](n)/Ta multilayers. Two series of Co-rich CoFeNi alloys were used. In series (I) the Co content decreases from 90 to 67 at. %, Fe content increases from 10 to 20 at.% and Ni content - from 0 to 13 at.%. Series (II) includes alloys with a fixed Co content: Co70Fe30-xNix (x = 5, 10, 15 and 20). For each type of ternary alloys the multilayer composition was optimized in order to obtain maximum giant magnetoresistance (GMR). The highest GMR ratios of 30-33% at room temperature are revealed in multilayers of series (I) alloys. It has been established that the most effective CoFeNi alloys, using which the GMR multilayers have a high GMR ratio in combination with low coercivity, are located in a narrow region of the ternary diagram near the Co70Fe20Ni10 composition. A deviation of the ternary alloy composition from this optimal one leads either to a decrease in the GMR ratio, or to a significant increase of coercivity. (C) 2020 Elsevier B.V. All rights reserved.
机译:研究了玻璃/TagNi(80)Fe(20))(60)Cr-40/[CoFeNi/Cu(2.2nm)](n)/Ta多层膜的晶体结构、磁滞特性和磁电阻与组成的关系。使用了两系列富钴CoFeNi合金。在系列(I)中,Co含量从90%降至67%,铁含量从10%增加到20%镍含量——0至13 at.%。系列(II)包括具有固定Co含量的合金:Co70Fe30 xNix(x=5、10、15和20)。对于每种类型的三元合金,为了获得最大巨磁电阻(GMR),对多层合金的成分进行了优化。在室温下,系列(I)合金的多层膜的GMR比率最高,为30-33%。已经确定,最有效的CoFeNi合金位于靠近Co70Fe20Ni10成分的三元图的狭窄区域,使用该合金,GMR多层膜具有高GMR比和低矫顽力。三元合金成分偏离最佳成分会导致GMR比降低或矫顽力显著增加。(C) 2020爱思唯尔B.V.版权所有。

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