Claims
- 1. A perpendicular magnetic recording medium, comprising:
a hard magnetic recording layer; and a soft magnetic underlayer under the hard magnetic recording layer, wherein the soft magnetic underlayer comprises:
a first ferromagnetically coupled multilayer structure; a second ferromagnetically coupled multilayer structure; and a coupling layer positioned between said first and second ferromagnetically coupled multilayer structures, said coupling layer antiferromagnetically coupling said first and second ferromagnetically coupled multilayer structures.
- 2. The recording medium of claim 1, wherein said first ferromagnetically coupled multilayer structure includes first and second magnetic layers that are ferromagnetically coupled by an interlayer positioned therebetween.
- 3. The recording medium of claim 2, wherein said first and second magnetic layers each have a thickness of from about 10 nm to about 50 nm.
- 4. The recording medium of claim 2, wherein said interlayer comprises at least one material selected from Ru, Cr, Cu, Al2O3, Re, Au, and Al.
- 5. The recording medium of claim 2, wherein said interlayer has a thickness of from about 0.5 nm to about 5 nm.
- 6. The recording medium of claim 2, wherein said first ferromagnetically coupled multilayer structure includes a third magnetic layer that is ferromagnetically coupled by an additional interlayer to said second magnetic layer.
- 7. The recording medium of claim 1, wherein said coupling layer comprises at least one material selected from Ru, Cr, Cu, Al2O3 and Re.
- 8. The recording medium of claim 1, wherein said coupling layer has a thickness of from about 0.5 nm to about 5.0 nm.
- 9. The recording medium of claim 1, wherein said second ferromagnetically coupled multilayer structure includes first and second magnetic layers that are ferromagnetically coupled by an interlayer positioned therebetween.
- 10. The recording medium of claim 9, wherein said first and second magnetic layers each have a thickness of from about 10 nm to about 50 nm.
- 11. The recording medium of claim 9, wherein said interlayer comprises at least one material selected from Ru, Cr, Cu, Al2O3, Re, Au and Al.
- 12. The recording medium of claim 8, wherein said interlayer has a thickness of from about 0.5 nm to about 5 nm.
- 13. The recording medium of claim 9, wherein said second ferromagnetically coupled multilayer structure includes a third magnetic layer that is ferromagnetically coupled by an additional interlayer to said second magnetic layer.
- 14. A magnetic disc drive storage system, comprising:
a housing; a perpendicular magnetic recording medium positioned in said housing; a movable recording head mounted in said housing adjacent said perpendicular magnetic recording medium; and said perpendicular magnetic recording medium comprising a hard magnetic recording layer and a soft magnetic underlayer under the hard magnetic recording layer, wherein the soft magnetic underlayer comprises:
a first ferromagnetically coupled multilayer structure; a second ferromagnetically coupled multilayer structure; and a coupling layer positioned between said first and second ferromagnetically coupled multilayer structures, said coupling layer antiferromagnetically coupling said first and second ferromagnetically coupled multilayer structures.
- 15. A perpendicular magnetic recording medium, comprising:
a hard magnetic recording layer; and a soft magnetic underlayer under the hard magnetic recording layer, wherein the soft magnetic underlayer comprises:
a plurality of magnetic layers; and a plurality of interlayers individually interposed between each of said plurality of magnetic layers to antiferromagnetically couple each of said plurality of magnetic layers successively.
- 16. A method of making a laminated magnetically soft underlayer of a perpendicular magnetic recording medium, comprising:
depositing a first ferromagnetically coupled multilayer structure on a substrate; depositing a coupling layer on said first ferromagnetically coupled multilayer structure; and depositing a second ferromagnetically coupled multilayer structure on said coupling layer, wherein said coupling layer antiferromagnetically couples said first and second ferromagnetically coupled multilayer structures.
- 17. The method of claim 16, wherein said step of depositing a first ferromagnetically coupled multilayer structure on the substrate comprises;
depositing an interlayer on the substrate; depositing a magnetic layer on the interlayer; depositing an additional interlayer on the magnetic layer; and depositing an additional magnetic layer on the additional interlayer.
- 18. The method of claim 17, including forming the magnetic layer and additional magnetic layer to each have a thickness of from about 10 nm to about 50 nm.
- 19. The method of claim 16, wherein said step of depositing a second ferromagnetically coupled multilayer structure on the coupling layer comprises;
depositing a magnetic layer on the coupling layer; depositing an interlayer on the magnetic layer; depositing an additional magnetic layer on the interlayer; and depositing an additional interlayer on the additional magnetic layer.
- 20. The method of claim 19, including forming the magnetic layer and additional magnetic layer to each have a thickness of from about 10 nm to about 50 nm.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application No. 60/312,173 filed Aug. 14, 2001.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60312173 |
Aug 2001 |
US |