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The Network-Shaped Upheaval Structure in (002) Textured MgO Layer for L10 FePt-Based Granular Media With Columnar Nanostructure

机译:具有柱状纳米结构的基于L1 0 FePt的粒状介质在(002)织构的MgO层中的网络形动荡结构

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摘要

Search for amorphous materials with high crystallization temperature and investigation of crystal orientation, surface morphology, and composition distribution of MgO/bcc-Cr80Mn20/amorphous-Co60W40 underlayer were conducted. As a result, the crystallization temperature of amorphous-Co60W40 is higher than 620 degrees C and it proved to be suitable as texture inducing layer material. Also, it was found that a network-shaped upheaval structure corresponding to the grain size of the (002) plane oriented CrMn grains was formed on the surface of the (002) plane oriented MgO layer. By utilizing the surface roughness of the underlayer, we proposed a columnar isolated granular medium for heat-assisted magnetic recording (HAMR) by using the FePt-oxide granular layer/pure FePt islandlike initial nucleus layeretworklike upheaval underlayer.
机译:搜寻具有高结晶温度的非晶态材料,并研究了MgO / bcc-Cr80Mn20 /非晶态Co60W40底层的晶体取向,表面形态和组成分布。结果,非晶态-Co 60 W 40的结晶温度高于620℃,并且被证明适合作为纹理诱导层材料。另外,发现在(002)面取向的MgO层的表面上形成有与(002)面取向的CrMn晶粒的粒径相对应的网状的隆起结构。通过利用底层的表面粗糙度,我们提出了一种使用FePt-氧化物颗粒层/纯FePt岛状初始核层/网络状动荡下层的柱状隔离颗粒介质,用于热辅助磁记录(HAMR)。

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