Effects of rapid thermal annealing on nanostructure, texture and magnetic properties of granular FePt:Ag films for perpendicular recording (invited)
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1540160
Reference12 articles.
1. High K/sub u/ materials approach to 100 Gbits/in/sup 2/
2. Nanostructured magnetic films for extremely high density recording
3. The feasibility of magnetic recording at 1 Terabit per square inch
4. Orientation-controlled nonepitaxial L10 CoPt and FePt films
5. FePt:SiO2 granular thin film for high density magnetic recording
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1. Influence of pressure on (0 0 1)-preferred orientation and in-plane residual stress in rapidly annealed FePt thin films;Applied Surface Science;2020-04
2. Investigation of phase transformations and corrosion resistance in Co/CoCo2O4 nanowires and their potential use as a basis for lithium-ion batteries;Scientific Reports;2019-11-12
3. Microstructure and magnetic properties of ultrathin FePt granular films;AIP Advances;2018-12
4. Fabrication and characterization ofL10-ordered FeNi thin films;Journal of Physics D: Applied Physics;2017-10-31
5. Improving atomic ordering in iron platinum magnetic film by suppressing grain growth by rapid thermal annealing with a high heating ramp rate;Thin Solid Films;2016-10
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