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Superparamagnetic Behavior of Pt/CoFe/Pt Nanowires With Decreasing Wire Width

机译:线宽减小的Pt / CoFe / Pt纳米线的超顺磁行为

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We present experimental demonstration that the thermal unstability grows with reducing the width of Pt/CoFe/Pt nanowires on the way to the superparamagnetic transition. The magnetic hysteresis loops measured at room temperature using a magneto-optical Kerr effect system reveal that the coercive field decreases drastically when the nanowire width is reduced smaller than 160 nm. To understand the origin of the coercive field reduction, the coercive field is measured with varying the sweep rate of the external magnetic field and then, analyzed with a thermally-activated magnetization reversal model. It is revealed that the reduction of the coercive field is mainly ascribed to the decrement of the thermal stability parameter, which in turn induces the abrupt reduction of the retention time down to a few seconds.
机译:我们目前的实验证明,在超顺磁转变的过程中,热不稳定性随着Pt / CoFe / Pt纳米线宽度的减小而增长。使用磁光Kerr效应系统在室温下测量的磁滞回线显示,当纳米线宽度减小到小于160 nm时,矫顽场将急剧减小。为了了解矫顽场减小的起源,可通过改变外部磁场的扫描速率来测量矫顽场,然后使用热激活的磁化反转模型进行分析。揭示了矫顽场的减小主要归因于热稳定性参数的减小,这进而引起保持时间的急剧减小至几秒钟。

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