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High K/sub u/ materials approach to 100 Gbits/in/sup 2/

IEEE Transactions on Magnetics · 2000 · Vol. 36(1) · pp. 10–15
D. WellerA. MoserL. FolksM.E. BestWen LeeMichael F. ToneyM. M. SchwickertJan-Ulrich ThieleM. Doerner

Abstract

High K/sub u/, uniaxial magnetocrystalline anisotropy, materials are generally attractive for ultrahigh density magnetic recording applications as they allow smaller, thermally stable media grains. Prominent candidates are rare-earth transition metals (Co/sub 5/Sm,...), and tetragonal intermetallic compounds (L1/sub 0/ phases FePt, CoPtY,...), which have 20-40 times higher K/sub u/ than today's hexagonal Co-alloy based media. This allows for about 3 times smaller grain diameters, D, and a potential 10-fold areal density increase (/spl prop/1/D/sup 2/), well beyond the currently projected 40-100 Gbits/in/sup 2/ mark, Realization of such densities will depend on a large number of factors, not all related to solving media microstructure problems, In particular it is at present not known how to record into such media, which may require write fields in the order of 10-100 kOe. Despite this unsolved problem, there is considerable interest in high Ku alternative media, both for longitudinal and perpendicular recording. Activities in this area will be reviewed and data on sputtered and evaporated thin FePt films, with coercivities exceeding 10000 Oe will be presented.

Magnetic properties of thin filmsMagnetic Properties of AlloysMagnetic Properties and ApplicationsMagnetocrystalline anisotropyIntermetallicMaterials scienceTetragonal crystal systemMicrostructureCoercivityAlloyRecording mediaCondensed matter physicsAnisotropy
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References
Thermal stability of recorded information at high densities
IEEE Transactions on Magnetics · 1997 · 516 citations
Thermal effect limits in ultrahigh-density magnetic recording
IEEE Transactions on Magnetics · 1999 · 1,214 citations
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