Published April 1, 2009 | Version v1
Journal article

FePt-C nanogranular films for perpendicular magnetic recording

  • 1. National Institute for Materials Science, 1-2-1 Sengen, Tsukuba-305 0047 (Japan)

Description

We report the study of L10 ordered FePt-C nanogranular perpendicular anisotropy films and a media consisting of an 8 nm thick FePt-C hard magnetic layer covered with a 2 nm thick soft magnetic layer (CoFe and FePt-C). All the films were fabricated on oxidized Si substrates with a (100) textured polycrystalline MgO intermediate layer of 10 nm in thickness. Cosputtering of Fe, Pt, and C on the MgO layer results the formation of L10 ordered FePt nanogranular films with a strong c-axis texture and the average FePt particle size of about 5 nm with a narrow particle size distribution of 1.4 nm in standard deviation. Perpendicular coercivity is controllable between 7 and 12 kOe. The coercivity and the saturation field of the FePt-C granular films can be reduced by 55% and 38%, respectively, with the capping of thin soft magnetic layer. This study demonstrates that the FePt-C system accomplishes suitable nanogranular structures and magnetic properties for ultrahigh-density perpendicular recording media

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Applied Physics
Journal Volume
105
Journal Issue
7
Journal Page Range
p. 07B732-07B732.3
ISSN
0021-8979
CODEN
JAPIAU

Conference

Title
53. annual conference on magnetism and magnetic materials
Dates
10-14 Nov 2008
Place
Austin, TX (United States)

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
40062417
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ANISOTROPY; COERCIVE FORCE; IRON ALLOYS; LAYERS; MAGNESIUM OXIDES; MAGNETIC PROPERTIES; NANOSTRUCTURES; PARTICLE SIZE; PLATINUM ALLOYS; POLYCRYSTALS; SILICON; SPUTTERING; SUBSTRATES; SURFACE COATING; THIN FILMS
Descriptors DEC
ALKALINE EARTH METAL COMPOUNDS; ALLOYS; CHALCOGENIDES; CRYSTALS; DEPOSITION; ELEMENTS; FILMS; MAGNESIUM COMPOUNDS; OXIDES; OXYGEN COMPOUNDS; PHYSICAL PROPERTIES; PLATINUM METAL ALLOYS; SEMIMETALS; SIZE; TRANSITION ELEMENT ALLOYS

Optional Information

Notes
(c) 2009 American Institute of Physics