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Influence of MgO underlayers on the structure and magnetic properties of FePt-C nanogranular films for heat-assisted magnetic recording media

机译:MgO底层对热辅助磁记录介质FePt-C纳米颗粒膜结构和磁性的影响

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In order to optimize the nanogranular structure of FePt-C for heat-assisted magnetic recording media, we investigated the influence of MgO underlayers on the growth of FePt grains in the FePt-C layer. The FePt-C layer was deposited by using the alternating sputtering method, by which FePt and FePt-C layers were alternately deposited. To understand the growth mechanism of the FePt-C layer on the MgO underlayers deposited under various conditions, detailed plan-view and cross sectional transmission electron microscopy observations were made for different film thicknesses. We found that columnar FePt grains grow only when the deposition conditions of the MgO underlayer are optimal. Direct TEM observation of the growth process of the FePt-C layer revealed that the number density of nuclei is sufficient in the initial stage of the film deposition; however, coarsening of the grains after grain impingement causes a substantial decrease in the number density of the FePt grains.
机译:为了优化用于热辅助磁记录介质的FePt-C的纳米颗粒结构,我们研究了MgO底层对FePt-C层中FePt晶粒生长的影响。通过使用交替溅射法来沉积FePt-C层,通过该方法交替地沉积FePt和FePt-C层。为了了解在各种条件下沉积的MgO底层上FePt-C层的生长机理,针对不同的膜厚进行了详细的平面图和截面透射电子显微镜观察。我们发现,只有当MgO底层的沉积条件最佳时,柱状FePt晶粒才会生长。用TEM直接观察FePt-C层的生长过程,发现在成膜的初始阶段,核的数量密度是足够的。然而,在撞击晶粒之后晶粒的粗化导致FePt晶粒的数量密度大大降低。

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