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Investigation on the Exchange Coupling Properties of Ring-Shaped MnIr/CoFe Bilayers

机译:环状MnIr / CoFe双层交换耦合特性的研究

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In this study, the exchange coupling properties of submicron patterned MnIr/CoFe bilayers with strong exchange coupling strength were investigated. The large area of 2.5 mm$,{times},$ 2.5 mm of submicron sized bilayer rings were fabricated by electron beam lithography and ion-milling processes. The clear variations of normalized magnetic hysteresis loops of patterned films are the degradation of pinned CoFe at the MnIr/CoFe interfaces and the decrease of exchange bias field, comparing with sheet film. After post-field-annealing treatment, only the exchange field was improved. A magnetic tunnel junction ring with outer diameter/linewidth of 2/0.5 $mu$m was constructed as well to further certify the speculations. The magnetoresistance loops of as-fabricated and post-field annealed MTJ ring revealed that the slightly improved magnetoresistance ratio and exchange field. These results were attributed to the rearrangement of distorted spins at the sample edges. However, in comparison with sheet film, the great degradation of magnetoresistance ratio of patterned device, without respect to as-fabricated or post-field annealed, was not retrieved, revealing that the futility of post-field-annealing treatment to the pinning portion of CoFe layer.
机译:在这项研究中,研究了具有强交换耦合强度的亚微米图案化MnIr / CoFe双层膜的交换耦合特性。通过电子束光刻和离子铣削工艺制造了2.5mm×2.5mm的大面积的亚微米级双层环。与片状薄膜相比,图案化薄膜的归一化磁滞回线的明显变化是MnIr / CoFe界面处钉扎CoFe的降解和交换偏压场的减小。经过场后退火处理,仅交换场得到改善。还构造了外径/线宽为2 / 0.5μm的磁性隧道结环,以进一步证明这一推测。制成的和场后退火的MTJ环的磁阻环表明,磁阻比和交换场略有改善。这些结果归因于样品边缘扭曲自旋的重新排列。但是,与片状薄膜相比,未获得图案化器件的磁阻比的极大降低,而没有考虑到原样或后场退火,这表明后场退火处理对器件的钉扎部分是无用的。 CoFe层。

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