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Full micromagnetics of recording on patterned media

机译:在图案化介质上记录的完整微磁学

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Numerical micromagnetics of the bit writing process revealed the theoretical limits for remanence, coercive field, switching behaviour at a short time scale of less than 1 ns for patterned recording media. We discuss our recent results concerning the influence of the granular microstructure on the fast switching processes of typical CoCrPtX, FePt and CoPd thin films used for high density magnetic recording with longitudinal and perpendicular anisotropy. In detail, we will show that the degree of the exchange coupling between neighbouring grains, the grain size and its distribution and the offset between recording head and bit structure finally control the magnetization reversal properties of the individual bits. (c) 2005 Published by Elsevier B.V.
机译:位写入过程的数字微磁学揭示了图案记录介质在不到1 ns的短时间尺度上的剩磁,矫顽场,开关行为的理论极限。我们讨论了有关颗粒微观结构对典型CoCrPtX,FePt和CoPd薄膜的快速转换过程的影响的最新结果,这些薄膜用于具有纵向和垂直各向异性的高密度磁记录。详细地,我们将表明相邻晶粒之间的交换耦合程度,晶粒尺寸及其分布以及记录头与位结构之间的偏移最终控制了单个位的磁化反转特性。 (c)2005年由Elsevier B.V.

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