2006•Unpublished venueRequires access

Design and Recording Simulation of 1 Tbit/in2 Patterned Media

N. Honda, K. Ouchi

Open publisher page 6 citations

Abstract

Perpendicular magnetic recording will dominate over the storage technology in the near future. However, a high areal density will be achieved only with introducing additional technologies to perpendicular recording. Among the candidates, patterned media would be the most promising because it is highly consistent with conventional magnetic recording. Design and recording properties were studied for 1 Tbit/in2patterned media using a micromagnetic simulation.

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What this paper is about

Perpendicular magnetic recording will dominate over the storage technology in the near future. However, a high areal density will be achieved only with introducing additional technologies to perpendicular recording. Among the candidates, patterned media would be the most promising because it is highly consistent with conventional magnetic recording. Design and recording properties were studied for 1 Tbit/in2patterned media using a micromagnetic simulation.

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Available abstract

Perpendicular magnetic recording will dominate over the storage technology in the near future. However, a high areal density will be achieved only with introducing additional technologies to perpendicular recording. Among the candidates, patterned media would be the most promising because it is highly consistent with conventional magnetic recording. Design and recording properties were studied for 1 Tbit/in2patterned media using a micromagnetic simulation.

Key concepts: Terabit, Patterned media, Recording media, Micromagnetics, Area density, Perpendicular recording, Perpendicular, Materials science

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