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L1_0-ordered FePtAg-C granular thin film for thermally assisted magnetic recording media (invited)

机译:L1_0订购的缩放-C颗粒薄膜,用于热辅助磁记录介质(邀请)

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We studied highly L1_0-ordered FePtAg-C nanogranular film as a potential high-density storage medium in thermally assisted magnetic recording (TAR). A 6.4-nm-thick FePtAg-C film with a perpendicular coercivity of 37 kOe and an average grain size of 6.1 ± 1.8 nm was fabricated on oxidized silicon substrate with a 10 nm MgO interlayer at 450 °C. The time-dependence measurement of remnant coercivity showed the energy barrier of E_b = 7.6 eV ~300 k_BT at room temperature, meaning the excellent thermal stability for long-term data storage. Static tester experiments on this film using a TAR head demonstrate the feasibility of recording at an areal density of ~450 Gbits/in.~2.
机译:我们研究了高度L1_0订购的备用-C纳米膜作为热辅助磁记录(焦油)的潜在高密度储存介质。在氧化硅衬底上制造具有37只koe的垂直矫顽力和平均晶粒尺寸的6.4nm厚的副粘膜,在450℃下具有10nm mgo中间层。残余矫顽力的时间依赖性测量显示了室温下E_B = 7.6eV〜300k_BT的能量屏障,这意味着长期数据存储的热稳定性。使用焦油头的该薄膜上的静态测试仪实验证明了在450 kbits / In的区域密度记录的可行性。〜2。

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