Back to Search Start Over

Bit Patterned Media at 1 Tdot/in^2 and Beyond.

Authors :
Albrecht, Thomas R.
Bedau, Daniel
Dobisz, Elizabeth
Gao, He
Grobis, Michael
Hellwig, Olav
Kercher, Dan
Lille, Jeffrey
Marinero, Ernesto
Patel, Kanaiyalal
Ruiz, Ricardo
Schabes, Manfred E.
Wan, Lei
Weller, Dieter
Wu, Tsai-Wei
Source :
IEEE Transactions on Magnetics. Feb2013 Part 1, Vol. 49 Issue 2, p773-778. 6p.
Publication Year :
2013

Abstract

Bit patterned media (BPM) provide an alternative to conventional granular thin film recording media, circumventing the challenges of managing grain size and its associated noise and thermal stability issues in granular media. A viable fabrication strategy involves creation of a master pattern by rotary-stage e-beam lithography and directed self-assembly of block copolymers, followed by pattern replication via UV-cure nanoimprint lithography and pattern transfer to a magnetic thin film by ion beam etching. These steps have been demonstrated for 150 Gdot/cm^2 (1 Tdot/in^2) hcp patterns, achieving a dot placement tolerance of 1.2 nm 1\sigma and a defect rate of <10^-3. Media samples fabricated in this manner from continuous CoCrPt alloy films have achieved a 1\sigma switching field distribution of 4% of \mbi H\mmb c. A 2T medium SNR of nearly 14 dB and a write bit error rate of 2\,\times\,10^-3 have been shown using a static tester with a conventional product read/write head. Modeling and experiment suggest that higher recording density can be achieved using BPM with a bit aspect ratio (BAR) > 1. A master pattern generation generation strategy for BAR > 1 with rectangular islands is shown using intersecting lines generated by directed self-assembly of lamellar block copolymers in combination with spacer-defined line doubling. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00189464
Volume :
49
Issue :
2
Database :
Academic Search Index
Journal :
IEEE Transactions on Magnetics
Publication Type :
Academic Journal
Accession number :
85150177
Full Text :
https://doi.org/10.1109/TMAG.2012.2227303