2008IEEE Transactions on MagneticsRequires access

Simulation Study of High-Density Bit-Patterned Media With Inclined Anisotropy

N. Honda, K. Yamakawa, K. Ouchi

Open publisher page 12 citations

Abstract

A new method was proposed to realize high areal densities beyond 2 Tbit/in2for bit-patterned media. Introduction of inclined anisotropy to the media was found to decrease the effect of magnetostatic interaction between the dots at high areal densities. Recording simulation with a perpendicular recording head revealed increased recording shift margins in both down and cross track directions. It was expected that shift margins of greater than 7 nm were expected in the both directions for recording at 2.6 Tbit/in2using a shielded planar head for the media with inclined anisotropy. Proposed method would be one of promising techniques for realizing high density recording beyond 2 Tbit/in2.

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What this paper is about

A new method was proposed to realize high areal densities beyond 2 Tbit/in2for bit-patterned media. Introduction of inclined anisotropy to the media was found to decrease the effect of magnetostatic interaction between the dots at high areal densities. Recording simulation with a perpendicular recording head revealed increased recording shift margins in both down and cross track directions. It was expected that shift margins of greater than 7 nm were expected in the both directions for recording at 2.6 Tbit/in2using a shielded planar head for the media with inclined anisotropy. Proposed method would be one of promising techniques for realizing high density recording beyond 2 Tbit/in2.

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Available abstract

A new method was proposed to realize high areal densities beyond 2 Tbit/in2for bit-patterned media. Introduction of inclined anisotropy to the media was found to decrease the effect of magnetostatic interaction between the dots at high areal densities. Recording simulation with a perpendicular recording head revealed increased recording shift margins in both down and cross track directions. It was expected that shift margins of greater than 7 nm were expected in the both directions for recording at 2.6 Tbit/in2using a shielded planar head for the media with inclined anisotropy. Proposed method would be one of promising techniques for realizing high density recording beyond 2 Tbit/in2.

Key concepts: Terabit, Area density, Patterned media, Anisotropy, Physics, Planar, Computer science, Head (geology)

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