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High Recording Performance of Bit-Patterned Media With Two-Layer Inclined Anisotropy ECC Dots

机译:具有两层倾斜各向异性ECC点的位模式媒体的高记录性能

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摘要

A simplified exchange coupled composite (ECC) dot structure with a reduced switching field and small applied field angle dependence in the switching field is proposed. It was found from a spin model analysis that a reduced switching field as well as a small applied field angle dependence of the field is obtainable even for two-layer ECC dot when the anisotropy axis is weakly inclined with an increased anisotropy for the soft layer. The switching properties of the two-layer ECC dots were confirmed using a micromagnetic simulation. A minimum normalized switching field of 0.51 was obtained for a two-layer ECC dot model of stacked cubes with a size of 5 nm and an anisotropy inclination angle of 10°. Recording simulation on a bit-pattered medium of the two-layer ECC dot array suggested the possibility of a high areal density recording beyond 4 Tdot/in2 by shingled recording. It was also confirmed by simulation that the proposed inclined anisotropy ECC dot could be applicable to granular media for narrow track recoding.
机译:提出了一种简化的交换耦合复合(ECC)点结构,该结构具有减小的开关场和较小的应用场角依赖性。从自旋模型分析发现,当各向异性轴弱倾斜而软层的各向异性增加时,即使对于两层ECC点,也可以获得减小的开关场以及较小的场施加场角依赖性。使用微磁仿真确认了两层ECC点的开关特性。对于大小为5 nm,各向异性倾斜角为10°的堆叠立方体的两层ECC点模型,获得的最小归一化切换场为0.51。在两层ECC点阵列的位模式介质上的记录模拟表明,通过混合记录可以实现超过4 Tdot / in2的高面密度记录。通过仿真也证实了所提出的倾斜各向异性ECC点可适用于用于窄轨道记录的颗粒状介质。

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    《IEEE Transactions on Magnetics》 |2017年第2期|1-7|共7页
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