Claims
- 1. A magnetic recording media comprising:
a substrate; and a hard magnetic recording film on the substrate comprising alternating layers of magnetic material and spacer material, wherein the magnetic material and spacer material comprise a microstructure including granular columns separated by oxidized boundary layers.
- 2. The magnetic recording media of claim 1, wherein the granular columns extend in a substantially perpendicular direction through the magnetic and spacer layers.
- 3. The magnetic recording media of claim 2, wherein the granular columns extend through all of the magnetic and spacer layers.
- 4. The magnetic recording media of claim 1, wherein the granular columns have substantially equiaxed cross sections.
- 5. The magnetic recording media of claim 4, wherein the granular columns have cross sectional diameters of from about 1 to about 100 nm.
- 6. The magnetic recording media of claim 1, wherein the oxidized boundary layers have thicknesses of from about 0.3 to about 2 nm.
- 7. The magnetic recording media of claim 1, wherein the oxidized boundary layers comprise an oxide of at least one metal selected from Cr, B, Ta, Nb, Y, La and rare earth elements.
- 8. The magnetic recording media of claim 1, wherein the oxidized boundary layers comprise an oxide of at least one metal selected from Cr and B.
- 9. The magnetic recording media of claim 1, wherein the oxidized boundary layers comprise boron oxide.
- 10. The magnetic recording media of claim 1, wherein the magnetic layers comprise at least one metal selected from Co, Ni and Fe.
- 11. The magnetic recording media of claim 1, wherein the magnetic layers comprise Co.
- 12. The magnetic recording media of claim 1, wherein the spacer layers comprise at least one metal selected from Pd, Pt and Au.
- 13. The magnetic recording media of claim 1, wherein the spacer layers comprise Pd.
- 14. The magnetic recording media of claim 1, wherein the magnetic and/or spacer layers comprise at least one additive selected from Cr, Pt, B, Ta, Nb, Y, La, rare earth elements and SiO2.
- 15. The magnetic recording media of claim 1, wherein the magnetic layers comprise at least one metal selected from Co, Ni and Fe, the spacer layers comprise at least one metal selected from Pd and Pt, and the magnetic and spacer layers further comprise at least one additive selected from Cr, Pt, B, Ta, Nb, Y, La, rare earth elements and SiO2.
- 16. The magnetic recording media of claim 15, wherein the magnetic layers comprise Co, the spacer layers comprise Pd, and the additives comprise at least one element selected from Cr and B.
- 17. The magnetic recording media of claim 15, wherein the additives are substantially the same in both the magnetic layers and spacer layers.
- 18. The magnetic recording media of claim 1, wherein the magnetic and spacer layers have average grain sizes of less than about 20 nm.
- 19. The magnetic recording media of claim 1, wherein the spacer layers have average grain sizes of from about 1 to about 10 nm.
- 20. The magnetic recording media of claim 1, wherein the hard magnetic recording layer comprises from 2 to 30 layers of each of the magnetic material and spacer material.
- 21. The magnetic recording media of claim 1, wherein each magnetic layer has a thickness of from about 0.3 to about 10 nm, and each spacer layer has a thickness of from about 0.3 to about 20 nm.
- 22. The magnetic recording media of claim 1, further comprising a soft magnetic layer between the substrate and the hard magnetic recording layer.
- 23. The magnetic recording media of claim 1, wherein the magnetic recording media is a perpendicular magnetic recording media.
- 24. An exchange decoupled magnetic recording film comprising alternating layers of magnetic material and spacer material, wherein the magnetic material and spacer material comprise a microstructure including granular columns separated by oxidized boundary layers.
- 25. The exchange decoupled magnetic recording film of claim 24, wherein the columnar microstructure extends in a substantially perpendicular direction through the magnetic and spacer layers.
- 26. The exchange decoupled magnetic recording film of claim 25, wherein the granular columns extend through all of the magnetic and spacer layers.
- 27. The exchange decoupled magnetic recording film of claim 24, wherein all of the layers of magnetic material and spacer material are exchange decoupled.
- 28. A method of making a magnetic recording film, the method comprising:
depositing alternating layers of magnetic material and spacer material; and treating the layers in an oxygen-containing atmosphere to produce oxidized boundary layers between granular columns of the layers.
- 29. The method of claim 28, wherein the oxygen-containing atmosphere comprises air.
- 30. The method of claim 28, wherein the oxygen-containing atmosphere is at room temperature.
- 31. The method of claim 28, wherein the oxygen-containing atmosphere is heated above room temperature.
- 32. The method of claim 31, wherein the oxygen-containing atmosphere is heated to a temperature of from about 50 to about 350° C.
- 33. The method of claim 28, wherein the layers are treated in the oxygen-containing atmosphere for a time of from about 1 hour to about 180 days.
- 34. The method of claim 28, wherein the granular columns extend in a substantially perpendicular direction through the magnetic and spacer layers.
- 35. The method of claim 34, wherein the granular columns extend through all of the magnetic and spacer layers.
- 36. The method of claim 28, wherein the oxidized boundary layers comprise an oxide of at least one metal selected from Cr, B, Ta, Nb, Y, La and rare earth elements.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application Ser. No. 60/235,943 filed Sep. 27, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60235943 |
Sep 2000 |
US |