Claims
- 1. A magnetic recording medium comprising:
a substrate; and a multilayer magnetic recording structure on the substrate comprising alternating layers of composite material and spacer material, wherein the composite material comprises a discontinuous magnetic phase and a continuous nonmagnetic phase.
- 2. The magnetic recording medium of claim 1, wherein the discontinuous magnetic phase comprises at least one metal selected from Co, Ni, Fe, FeCo, FeNi, FePt, CoNi and CoPt.
- 3. The magnetic recording medium of claim 1, wherein the discontinuous magnetic phase comprises Co.
- 4. The magnetic recording medium of claim 1, wherein the continuous nonmagnetic phase comprises C, SiOx, ZrOx, TiOx, AlOx, SiN, ZrC, WC, TaC, TiC, Cu, Ag or Au.
- 5. The magnetic recording medium of claim 1, wherein the continuous nonmagnetic phase comprises C, AlOx, Au or Ag.
- 6. The magnetic recording medium of claim 1, wherein the spacer layers comprise at least one metal selected from Pd, Pt, Au and combinations thereof.
- 7. The magnetic recording medium of claim 1, wherein the spacer layers comprise Pt.
- 8. The magnetic recording medium of claim 1, wherein the multilayer magnetic recording structure comprises from 1 to 40 layers of each of the composite material and spacer material.
- 9. The magnetic recording medium of claim 1, wherein each composite layer has a thickness of from about 0.3 to about 0.5 nm, and each spacer layer has a thickness of from about 0.8 to about 3 nm.
- 10. The magnetic recording medium of claim 1, wherein the discontinuous magnetic phase comprises substantially equiaxed platelets.
- 11. The magnetic recording medium of claim 10, wherein the platelets have an average diameter of from about 5 to about 40 nm.
- 12. The magnetic recording medium of claim 1, wherein the discontinuous magnetic phase comprises from about 30 to about 80 volume percent of the composite material.
- 13. The magnetic recording medium of claim 1, further comprising a soft magnetic layer between the substrate and the multilayer magnetic recording structure.
- 14. The magnetic recording medium of claim 13, further comprising a seed layer between the soft magnetic layer and the multilayer magnetic recording structure.
- 15. A multilayer magnetic recording structure comprising alternating layers of composite material and spacer material, wherein the composite material comprises a discontinuous magnetic phase and a continuous nonmagnetic phase.
- 16. The multilayer magnetic recording structure of claim 15, wherein the discontinuous magnetic phase comprises at least one metal selected from Co, Ni, Fe, and NiFe, CoNi or CoFe.
- 17. The multilayer magnetic recording structure of claim 15, wherein the continuous nonmagnetic phase comprises C, SiOx, ZrOx, TiOx, AlOx, SiN, ZrC, WC, TaC, TiC, Cu, Ag or Au.
- 18. The multilayer magnetic recording structure of claim 15, wherein the spacer layers comprise at least one metal selected from Pd, Pt, Au, PdAu, PtAu and PdPt.
- 19. The multilayer magnetic recording structure of claim 15, wherein the multilayer magnetic recording structure comprises from 1 to 40 layers of each of the composite material and spacer material.
- 20. The multilayer magnetic recording structure of claim 15, wherein the discontinuous magnetic phase comprises substantially equiaxed platelets.
- 21. A method of making a multilayer magnetic recording structure, the method comprising depositing alternating layers of composite material and spacer material, wherein the composite material comprises a discontinuous magnetic phase and a continuous nonmagnetic phase.
- 22. The method of claim 21, wherein the composite material is deposited by sputtering.
- 23. The method of claim 22, wherein the magnetic phase and nonmagnetic phases are provided from different sputtering targets.
- 24. The method of claim 22, wherein the magnetic phase and nonmagnetic phases are provided from a single sputtering target.
- 25. The method of claim 21, further comprising heat treating the composite material after is has been deposited.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/390,741 filed Jun. 21, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60390741 |
Jun 2002 |
US |