Claims
- 1. A perpendicular magnetic recording medium comprising a magnetic layer formed over a substrate, the magnetic layer comprising cobalt, platinum, and at least one of molybdenum and chromium, the magnetic layer having perpendicular magnetic anisotropy.
- 2. The perpendicular magnetic recording medium of claim 1, wherein the magnetic layer comprises molybdenum at a concentration in the range of about 0.5 atomic % to about 6 atomic %.
- 3. The perpendicular magnetic recording medium of claim 2, wherein the magnetic layer has the general formula CoPtxMoz, and wherein x is between about 15 atomic % and about 25 atomic %, and z is between about 0.5 atomic % and about 6 atomic %.
- 4. The perpendicular magnetic recording medium of claim 1, wherein the magnetic layer comprises chromium at a concentration in the range of about 3 atomic % to about 12 atomic %.
- 5. The perpendicular magnetic recording medium of claim 1, wherein the magnetic layer further comprises at least one of B, Ta, Nb, Si, Ni, and Ti.
- 6. The perpendicular magnetic recording medium of claim 1, wherein the magnetic layer has the general formula CoPtxCryMoz, and wherein x is between about 15 atomic % and about 25 atomic %, y is between about 3 atomic % and about 12 atomic %, and z is between about 0.5 atomic % and about 6 atomic %.
- 7. The perpendicular magnetic recording medium of claim 1, wherein the magnetic layer has a granular structure comprising crystalline grains and grain boundaries comprising oxides.
- 8. The perpendicular magnetic recording medium of claim 1, further comprising:
at least one underlayer formed over the substrate and below the magnetic layer; and a protective overcoat over the magnetic layer, the protective overcoat having a thickness of less than about 60 Å.
- 9. The perpendicular magnetic recording medium of claim 8, further comprising an intermediate layer consisting of ruthenium, ruthenium alloy, or non-magnetic cobalt-chromium, wherein the intermediate layer is formed over the at least one underlayer and the magnetic layer is formed over the intermediate layer.
- 10. A perpendicular magnetic recording medium comprising:
an intermediate layer formed over a substrate, the intermediate layer comprising ruthenium; and a magnetic layer formed over the intermediate layer, the magnetic layer comprising cobalt, platinum, and at least one of molybdenum and chromium, the magnetic layer having perpendicular magnetic anisotropy.
- 11. The perpendicular magnetic recording medium of claim 10, wherein the magnetic layer comprises molybdenum at a concentration in the range of about 0.5 atomic % to about 6 atomic %.
- 12. The perpendicular magnetic recording medium of claim 11, wherein the magnetic layer has the general formula CoPtxMoz, and wherein x is between about 15 atomic % and about 25 atomic %, and z is between about 0.5 atomic % and about 6 atomic %.
- 13. The perpendicular magnetic recording medium of claim 10, wherein the magnetic layer comprises chromium at a concentration in the range of about 3 atomic % to about 12 atomic %.
- 14. The perpendicular magnetic recording medium of claim 10, wherein the magnetic layer further comprises at least one of B, Ta, Nb, Si, Ni, and Ti.
- 15. The perpendicular magnetic recording medium of claim 10, wherein the magnetic layer has the general formula CoPtxCryMoz, and wherein x is between about 15 atomic % and about 25 atomic %, y is between about 3 atomic % and about 12 atomic %, and z is between about 0.5 atomic % and about 6 atomic %.
- 16. The perpendicular magnetic recording medium of claim 10, wherein the magnetic layer has a granular structure comprising crystalline grains and grain boundaries comprising oxides.
- 17. A method of manufacturing a perpendicular magnetic recording medium, comprising depositing a magnetic layer over a substrate, wherein the magnetic layer comprises cobalt, platinum, and at least one of molybdenum and chromium, and wherein the magnetic layer has perpendicular magnetic anisotropy.
- 18. The method of manufacturing a perpendicular magnetic recording medium of claim 17, further comprising depositing an intermediate layer comprising at least one of ruthenium, ruthenium alloy, and non-magnetic cobalt-chromium, wherein the intermediate layer is formed over the substrate prior to depositing the magnetic layer thereon.
- 19. The method of manufacturing a perpendicular magnetic recording medium of claim 17, wherein depositing comprises sputtering the magnetic layer in the presence of an inert gas.
- 20. The method of manufacturing a perpendicular magnetic recording medium of claim 17, wherein depositing comprises reactive sputtering the magnetic layer in the presence of a gas comprising oxygen.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority from Provisional Patent Application Ser. No. 60/475,730, entitled “Granular Perpendicular Media Design with. Improved Corrosion Performance” which was filed Jun. 3, 2003, the entire disclosure of which is hereby incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60475730 |
Jun 2003 |
US |