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Design and Micromagnetic Simulation of Fe/L10-FePt/Fe Trilayer for Exchange Coupled Composite Bit Patterned Media at Ultrahigh Areal Density

机译:超高面密度交换耦合复合位图样介质Fe / L10-FePt / Fe三层的设计和微磁模拟

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摘要

Exchange coupled composite bit patterned media (ECC-BPM) are one candidate to solve the trilemma issues, overcome superparamagnetic limitations, and obtain ultrahigh areal density. In this work, the ECC continuous media and ECC-BPM of Fe/L10-FePt/Fe trilayer schemes are proposed and investigated based on the Landau-Lifshitz-Gilbert equation. The switching field,Hsw, of the hard phase in the proposed continuous ECC trilayer media structure is reduced below the maximum write head field at interlayer exchange coupling between hard and soft phases,Aex, higher than 20 pJ/m and its value is lower than that for continuousL10-FePt single layer media andL10-FePt/Fe bilayer. Furthermore, theHswof the proposed ECC-BPM is lower than the maximum write head field with exchange coupling coefficient between neighboring dots of 5 pJ/m andAexover 10 pJ/m. Therefore, the proposed ECC-BPM trilayer has the highest potential and is suitable for ultrahigh areal density magnetic recording technology at ultrahigh areal density. The results of this work may be gainful idea for nanopatterning in magnetic media nanotechnology.
机译:交换耦合复合位模式介质(ECC-BPM)是解决三难问题,克服超顺磁限制并获得超高面密度的一种候选方法。在这项工作中,基于Landau-Lifshitz-Gilbert方程,提出并研究了Fe / L10-FePt / Fe三层方案的ECC连续介质和ECC-BPM。所提出的连续ECC三层介质结构中硬相的开关场Hsw在硬相和软相之间的层间交换耦合Aex上被减小到最大写磁头场以下,高于20 pJ / m,其值低于适用于连续的L10-FePt单层介质和L10-FePt / Fe双层介质。此外,所提出的ECC-BPM的Hsw低于最大写入头字段,相邻点之间的交换耦合系数为5 pJ / m和Aexover 10 pJ / m。因此,提出的ECC-BPM三层具有最高的潜力,并且适用于超高面密度的超高面密度磁记录技术。这项工作的结果对于磁性媒体纳米技术中的纳米图案化可能是有益的想法。

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