Metal alloys for the reflective or the semi-reflective layer of an optical storage medium
View Patent ↗A silver-based alloy thin film is provided for the highly reflective or semi-reflective coating layer of optical discs. Elements that can be added to silver to produce useful silver alloys include zinc, aluminum, copper, manganese, germanium, yttrium, bismuth, scandium, and cobalt. These alloys have moderate to high reflectivity and reasonable corrosion resistance in the ambient environment.
1. An optical storage medium, comprising:
a first layer having a pattern of features in at least one major surface;
a reflective layer;
a second layer having a pattern of features in at least one major surface and
a semi-reflective layer including a metal alloy, said metal alloy including silver and yttrium, wherein the relationship between the amounts of silver and yttrium in the metal alloy is defined by Ag x Y w where 0.9500<x<0.9999 and 0.0001<w<0.05.
2. The optical storage medium of claim 1 , wherein 0.001<w<0.03.
3. The optical storage medium of claim 1 , wherein said reflective layer is a highly reflective layer.
4. The optical storage medium of claim 1 , wherein said pattern of features includes a spiral groove.
5. The optical storage medium of claim 4 , further comprising:
at least one layer including a dielectric material;
at least one layer including an optically re-recordable material.
6. The optical storage medium of claim 5 , wherein said optically re-recordable material is a phase-changeable material.
7. The optical storage medium of claim 6 , wherein said phase changeable material is selected from the group consisting of Ge—Sb—Te, As—In—Sb—Te, Cr—Ge—Sb—Te, As—Te—Ge, Te—Ge—Sn, Te—Ge—Sn—O, Te—Se, Sn—Te—Se, Te—Ge—Sn—Au, Ge—Sb—Te, Sb—Te—Se, In—Se—Tl, In Sb, In—Sb—Se, In—Se—Tl—Co, Bi—Ge, Bi—Ge—Sb, Bi—Ge—Te, and Si—Te—Sn.
8. The optical storage medium of claim 5 , wherein said optically re-recordable material is a magneto-optic material.
9. The optical storage medium of claim 8 , wherein said optically re-recordable material further comprises a magneto-optic material selected from the group consisting of Tb—Fe—Co and Gd—Tb—Fe.
10. An optical storage medium, comprising:
a first layer having a pattern of features in at least one major surface;
a reflective layer;
a second layer having a pattern of features in at least one major surface and
a semi-reflective layer including a metal alloy, said metal alloy including silver and scandium, wherein the relationship between the amounts of silver and scandium in the metal alloy is defined by Ag x Sc w where 0.9500<x<0.9999 and 0.0001<w<0.05.
11. The optical storage medium of claim 10 , wherein 0.001<w<0.03.
12. The optical storage medium of claim 10 , wherein said reflective layer is a highly reflective layer.
13. The optical storage medium of claim 10 , wherein said pattern of features includes a spiral groove.
14. The optical storage medium of claim 10 , further comprising:
at least one layer including a dielectric material;
at least one layer including an optically re-recordable material.
15. The optical storage medium of claim 14 , wherein said optically re-recordable material is a phase-changeable material.
16. The optical storage medium of claim 15 , wherein said phase changeable material is selected from the group consisting of Ge—Sb—Te, As—In—Sb—Te, Cr—Ge—Sb—Te, As—Te—Ge, Te—Ge—Sn, Te—Ge—Sn—O, Te—Se, Sn—Te—Se, Te—Ge—Sn—Au, Ge—Sb—Te, Sb—Te—Se, In—Se—Tl, In Sb, In—Sb—Se, In—Se—Tl—Co, Bi—Ge, Bi—Ge—Sb, Bi—Ge—Te, and Si—Te—Sn.
17. The optical storage medium of claim 14 , wherein said optically re-recordable material is a magneto-optic material.
18. The optical storage medium of claim 17 , wherein said optically re-recordable material further comprises a magneto-optic material selected from the group consisting of Tb—Fe—Co and Gd—Tb—Fe.
19. An optical storage medium, comprising:
a first layer having a pattern of features in at least one major surface;
a reflective layer;
a second layer having a pattern of features in at least one major surface and
a semi-reflective layer including a metal alloy, said metal alloy including silver and bismuth, wherein the relationship between the amounts of silver and bismuth in the metal alloy is defined by Ag x Bi w where 0.9500<x<0.9999 and 0.0001<w<0.05.
20. The optical storage medium of claim 19 , wherein 0.001<w<0.03.
21. The optical storage medium of claim 19 , wherein said reflective layer is a highly reflective layer.
22. The optical storage medium of claim 19 , wherein of said pattern of features includes a spiral groove.
23. The optical storage medium of claim 19 , further comprising:
at least one layer including a dielectric material;
at least one layer including an optically re-recordable material.
24. The optical storage medium of claim 23 , wherein said optically re-recordable material is a phase-changeable material.
25. The optical storage medium of claim 24 , wherein said phase changeable material is selected from the group consisting of Ge—Sb—Te, As—In—Sb—Te, Cr—Ge—Sb—Te, As—Te—Ge, Te—Ge—Sn, Te—Ge—Sn—O, Te—Se, Sn—Te—Se, Te—Ge—Sn—Au, Ge—Sb—Te, Sb—Te—Se, In—Se—Tl, In Sb, In—Sb—Se, In—Se—Tl—Co, Bi—Ge, Bi—Ge—Sb, Bi—Ge—Te, and Si—Te—Sn.
26. The optical storage medium of claim 23 , wherein said optically re-recordable material is a magneto-optic material.
27. The optical storage medium of claim 26 , wherein said optically re-recordable material further comprises a magneto-optic material selected from the group consisting of Tb—Fe—Co and Gd—Tb—Fe.
28. An optical storage medium, comprising:
a first layer having a pattern of features in at least one major surface;
a reflective layer;
a second layer having a pattern of features in at least one major surface and
a semi-reflective layer including a metal alloy, said metal alloy including silver, copper, and element A, where A is selected from the group of elements consisting of yttrium, scandium, or bismuth, wherein the relationship between the amounts of silver, copper, and element A in the metal alloy is defined by Ag x Cu z A w where 0.85<x<0.9998, 0.0001<z<0.10, and 0.0001<w<0.05.
29. The optical storage medium of claim 28 , wherein 0.001<w<0.03.
30. The optical storage medium of claim 28 , wherein said reflective layer is a highly reflective layer.
31. The optical storage medium of claim 28 , wherein said pattern of features includes a spiral groove.
32. The optical storage medium of claim 28 , further comprising:
at least one layer including a dielectric material;
at least one layer including an optically re-recordable material.
33. The optical storage medium of claim 32 , wherein said optically re-recordable material is a phase-changeable material.
34. The optical storage medium of claim 33 , wherein said phase changeable material is selected from the group consisting of Ge—Sb—Te, As—In—Sb—Te, Cr—Ge—Sb—Te, As—Te—Ge, Te—Ge—Sn, Te—Ge—Sn—O, Te—Se, Sn—Te—Se, Te—Ge—Sn—Au, Ge—Sb—Te, Sb—Te—Se, In—Se—Tl, In Sb, In—Sb—Se, In—Se—Tl—Co, Bi—Ge, Bi—Ge—Sb, Bi—Ge—Te, and Si—Te—Sn.
35. The optical storage medium of claim 32 , wherein said optically re-recordable material is a magneto-optic material.
36. The optical storage medium of claim 35 , wherein said optically re-recordable material further comprises a magneto-optic material selected from the group consisting of Tb—Fe—Co and Gd—Tb—Fe.
37. An optical storage medium, comprising:
a first layer having a pattern of features in at least one major surface;
a reflective layer;
a second layer having a pattern of features in at least one major surface and
a semi-reflective layer including a metal alloy, said metal alloy including silver, copper, and magnesium, wherein the relationship between the amounts of silver, copper, and magnesium in the metal alloy is defined by Ag x Cu z Mg w where 0.85<x<0.9998, 0.0001<z<0.10, and 0.0001<w<0.05.
38. The optical storage medium of claim 37 , wherein 0.001<w<0.03.
39. The optical storage medium of claim 37 , wherein said reflective layer is a highly reflective layer.
40. The optical storage medium of claim 37 , wherein said pattern of features includes a spiral groove.
41. The optical storage medium of claim 37 , further comprising:
at least one layer including a dielectric material;
at least one layer including an optically re-recordable material.
42. The optical storage medium of claim 41 , wherein said optically re-recordable material is a phase-changeable material.
43. The optical storage medium of claim 42 , wherein said phase changeable material is selected from the group consisting of Ge—Sb—Te, As—In—Sb—Te, Cr—Ge—Sb—Te, As—Te—Ge, Te—Ge—Sn, Te—Ge—Sn—O, Te—Se, Sn—Te—Se, Te—Ge—Sn—Au, Ge—Sb—Te, Sb—Te—Se, In—Se—Tl, In Sb, In—Sb—Se, In—Se—Tl—Co, Bi—Ge, Bi—Ge—Sb, Bi—Ge—Te, and Si—Te—Sn.
44. The optical storage medium of claim 41 , wherein said optically re-recordable material is a magneto-optic material.
45. The optical storage medium of claim 44 , wherein said optically re-recordable material further comprises a magneto-optic material selected from the group consisting of Tb—Fe—Co and Gd—Tb—Fe.
46. An optical storage medium, comprising:
a first layer having a pattern of features in at least one major surface;
a reflective layer;
a second layer having a pattern of features in at least one major surface and
a semi-reflective layer including a metal alloy, said metal alloy including silver, copper, and cobalt, wherein the relationship between the amounts of silver, copper, and cobalt in the metal alloy is defined by Ag x Cu z Co w where 0.85<x<0.9998, 0.0001<z<0.10, and 0.0001<w<0.05.
47. The optical storage medium of claim 46 , wherein 0.001<w<0.03.
48. The optical storage medium of claim 46 , wherein said reflective layer is a highly reflective layer.
49. The optical storage medium of claim 46 , wherein said pattern of features includes a spiral groove.
50. The optical storage medium of claim 46 , further comprising:
at least one layer including a dielectric material;
at least one layer including an optically re-recordable material.
51. The optical storage medium of claim 50 , wherein said optically re-recordable material is a phase-changeable material.
52. The optical storage medium of claim 51 , wherein said phase changeable material is selected from the group consisting of Ge—Sb—Te, As—In—Sb—Te, Cr—Ge—Sb—Te, As—Te—Ge, Te—Ge—Sn, Te—Ge—Sn—O, Te—Se, Sn—Te—Se, Te—Ge—Sn—Au, Ge—Sb—Te, Sb—Te—Se, In—Se—Tl, In Sb, In—Sb—Se, In—Se—Tl—Co, Bi—Ge, Bi—Ge—Sb, Bi—Ge—Te, and Si—Te—Sn.
53. The optical storage medium of claim 50 , wherein said optically re-recordable material is a magneto-optic material.
54. The optical storage medium of claim 53 , wherein said optically re-recordable material further comprises a magneto-optic material selected from the group consisting of Tb—Fe—Co and Gd—Tb—Fe.
55. An optical storage medium, comprising:
a first layer having a pattern of features in at least one major surface;
a reflective layer;
a second layer having a pattern of features in at least one major surface and
a semi-reflective layer including a metal alloy, said metal alloy including silver, zinc, and magnesium, wherein the relationship between the amounts of silver, zinc, and magnesium in the metal alloy is defined by Ag x Zn y Mg w where 0.8000<x<0.9998, 0.0001<y<0.15, and 0.0001<w<0.05.
56. The optical storage medium of claim 55 , wherein 0.001<w<0.03.
57. The optical storage medium of claim 55 , wherein said reflective layer is a highly reflective layer.
58. The optical storage medium of claim 55 , wherein said pattern of features includes a spiral groove.
59. The optical storage medium of claim 55 , further comprising:
at least one layer including a dielectric material;
at least one layer including an optically re-recordable material.
60. The optical storage medium of claim 59 , wherein said optically re-recordable material is a phase-changeable material.
61. The optical storage medium of claim 60 , wherein said phase changeable material is selected from the group consisting of Ge—Sb—Te, As—In—Sb—Te, Cr—Ge—Sb—Te, As—Te—Ge, Te—Ge—Sn, Te—Ge—Sn—O, Te—Se, Sn—Te—Se, Te—Ge—Sn—Au, Ge—Sb—Te, Sb—Te—Se, In—Se—Tl, In—Sb, In—Sb—Se, In—Se—Tl—Co, Bi—Ge, Bi—Ge—Sb, Bi—Ge—Te, and Si—Te—Sn.
62. The optical storage medium of claim 59 , wherein said optically re-recordable material is a magneto-optic material.
63. The optical storage medium of claim 62 , wherein said optically re-recordable material further comprises a magneto-optic material selected from the group consisting of Tb—Fe—Co and Gd—Tb—Fe.
64. An optical storage medium, comprising:
a first layer having a pattern of features in at least one major surface;
a reflective layer;
a second layer having a pattern of features in at least one major surface and
a semi-reflective layer including a metal alloy, said metal alloy including silver, zinc, and cobalt, wherein the relationship between the amounts of silver, zinc, and cobalt in the metal alloy is defined by Ag x Zn y Co w where 0.8000<x<0.9998, 0.0001<y<0.15, and 0.0001<w<0.05.
65. The optical storage medium of claim 64 , wherein 0.001<w<0.03.
66. The optical storage medium of claim 64 , wherein said reflective layer is a highly reflective layer.
67. The optical storage medium of claim 64 , wherein said pattern of features includes a spiral groove.
68. The optical storage medium of claim 64 , further comprising:
at least one layer including a dielectric material;
at least one layer including an optically re-recordable material.
69. The optical storage medium of claim 68 , wherein said optically re-recordable material is a phase-changeable material.
70. The optical storage medium of claim 69 , wherein said phase changeable material is selected from the group consisting of Ge—Sb—Te, As—In—Sb—Te, Cr—Ge—Sb—Te, As—Te—Ge, Te—Ge—Sn, Te—Ge—Sn—O, Te—Se, Sn—Te—Se, Te—Ge—Sn—Au, Ge—Sb—Te, Sb—Te—Se, In—Se—Tl, In—Sb, In—Sb—Se, In—Se—Tl—Co, Bi—Ge, Bi—Ge—Sb, Bi—Ge—Te, and Si—Te—Sn.
71. The optical storage medium of claim 68 , wherein said optically re-recordable material is a magneto-optic material.
72. The optical storage medium of claim 71 , wherein said optically re-recordable material further comprises a magneto-optic material selected from the group consisting of Tb—Fe—Co and Gd—Tb—Fe.