Claims
- 1. A magnetic recording medium comprising:
a substrate; and an ion irradiated magnetic recording film on the substrate, wherein the film comprises an alloy selected from Cr, Mn, Fe and Ni alloys and includes magnetic regions and non-magnetic regions.
- 2. The magnetic recording medium of claim 1, wherein the film comprises a Cr alloy.
- 3. The magnetic recording medium of claim 2, wherein the Cr alloy comprises Pt and/or Pd.
- 4. The magnetic recording medium of claim 2, wherein the alloy comprises CrPt3.
- 5. The magnetic recording medium of claim 4, wherein the alloy further comprises Mn.
- 6. The magnetic recording medium of claim 1, wherein the film comprises a Mn alloy.
- 7. The magnetic recording medium of claim 6, wherein the Mn alloy comprises MnAlτ-phase.
- 8. The magnetic recording medium of claim 1, wherein the film comprises an Fe alloy.
- 9. The magnetic recording medium of claim 8, wherein the Fe alloy comprises FePt3 and/or FeAl.
- 10. The magnetic recording medium of claim 1, wherein the film has been irradiated by ions selected from He, B, C, N, Ar, Ne, Kr and Xe ions.
- 11. The magnetic recording medium of claim 1, wherein the film has been irradiated by B ions.
- 12. The magnetic recording medium of claim 1, wherein the non-magnetic regions are chemically disordered and the magnetic regions are chemically ordered.
- 13. The magnetic recording medium of claim 12, wherein the non-magnetic regions correspond to ion irradiated portions of the film.
- 14. The magnetic recording medium of claim 13, wherein the non-magnetic regions correspond to a selected pattern.
- 15. The magnetic recording medium of claim 13, wherein the non-magnetic regions correspond to grain boundary regions between magnetic grains of the film.
- 16. The magnetic recording medium of claim 12, wherein the magnetic regions correspond to portions of the film that were not subjected to ion irradiation.
- 17. The magnetic recording medium of claim 16, wherein the magnetic regions correspond to a selected pattern.
- 18. The magnetic recording medium of claim 1, wherein the non-magnetic regions are chemically ordered and the magnetic regions are chemically disordered.
- 19. The magnetic recording medium of claim 18, wherein the magnetic regions correspond to ion irradiated portions of the film and the non-magnetic regions correspond to portions of the film that were not subjected to ion irradiation.
- 20. The magnetic recording medium of claim 18, wherein the magnetic and non-magnetic regions correspond to a selected pattern.
- 21. A magnetic recording medium comprising:
a substrate; and a boron-irradiated magnetic recording film on the substrate, wherein the film comprises an alloy selected from Cr, Mn, Fe, Co and Ni alloys and includes magnetic regions and non-magnetic regions.
- 22. An ion irradiated magnetic film comprising magnetic regions and non-magnetic regions, wherein the film comprises an alloy selected from Cr, Mn, Fe and Ni alloys.
- 23. The ion irradiated magnetic film of claim 22, wherein the alloy comprises CrPt3.
- 24. The ion irradiated magnetic film of claim 22, wherein the magnetic film has been irradiated by B ions.
- 25. The ion irradiated magnetic film of claim 22, wherein the film comprises a recording film of a magnetic recording medium.
- 26. A method of making a magnetic film having magnetic and non-magnetic regions, the method comprising subjecting at least a portion of the film to ion irradiation in order to convert regions of the film from a chemically ordered material to a chemically disordered material, thereby producing the magnetic and non-magnetic regions, wherein the film comprises an alloy selected from Cr, Mn, Fe and Ni alloys.
- 27. The method of claim 26, wherein the film comprises CrPt3.
- 28. The method of claim 26, wherein the ion irradiation is performed with ions selected from He, B, C, N, Ar, Ne, Kr and Xe ions.
- 29. The method of claim 26, wherein the ion irradiation is performed with B ions.
- 30. The method of claim 29, wherein the ion irradiation is provided with an ion implantation dosage of from 1013 to 1015 B ions per cm2.
- 31. The method of claim 29, wherein the ion irradiation has an ion implantation energy of from about 50 to about 500 keV.
- 32. The method of claim 26, wherein the ion irradiation is provided with ion implantation dosages of less than or equal to 1015 ions per cm2.
- 33. The method of claim 26, wherein the ion irradiation has an ion implantation energy of less than or equal to 500 keV.
- 34. The method of claim 26, wherein the ion irradiation is applied in a selected pattern on the film.
- 35. The method of claim 26, wherein the film is deposited on a substrate.
- 36. The method of claim 35, wherein the deposited film is thermally treated before the ion irradiation.
- 37. A method of making a magnetic film having magnetic and non-magnetic regions, the method comprising subjecting at least a portion of the film to ion irradiation comprising B ions in order to convert regions of the film from a chemically ordered material to a chemically disordered material, thereby producing the magnetic and non-magnetic regions.
- 38. The method of claim 37, wherein the film comprises an alloy selected from Cr, Mn, Fe, Co and Ni alloys.
- 39. The method of claim 37, wherein the ion irradiation is provided with an ion implantation dosage of from 1013 to 1015 B ions per cm2.
- 40. The method of claim 37, wherein the ion irradiation has an ion implantation energy of from about 50 to about 500 keV.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/337,573 filed Oct. 22, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60337573 |
Oct 2001 |
US |