然而,要想达到实用化仍需解决几个关键问题:有序化温度的降低:磁性颗粒大小一致而且彼此均匀的由非磁性材料分离:薄膜的取向。
Some key issues for the application of Ll_0-FePt films remained to be solved: decreasing the ordering temperature, magnetic particles were separated by nonmagnetic particles and uniform, orientation.
多层膜化促进有序化在较低的温度下进行,这是由于热处理过程中多层膜界面的消失提供了有序化过程额外的驱动力。
Relatively low ordering temperature for the multilayer is due to the extra driving force of ordering process caused by the vanishing of the multilayer interface at annealing.
多层膜化促进有序化在较低的温度下进行,这是由于热处理过程中多层膜界面的消失提供了有序化过程额外的驱动力。
Relatively low ordering temperature for the multilayer is due to the extra driving force of ordering process caused by the vanishing of the multilayer interface at annealing.
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