Claims
- 1. A recording medium, comprising:(a) a substrate; (b) a stack of thin film layers on said substrate; and (c) a protective overcoat layer on the surface of an uppermost layer of said stack of thin film layers, wherein: said protective overcoat layer comprises a hard, abrasion and corrosion resistant, high carbon density, amorphous carbon or hydrogenated carbon (C:H) material including a first, undoped sub-layer (c1) in contact with said surface of said uppermost layer of said stack of thin film layers and a second, nitrogen (N)-doped sub-layer (c2) on said first, undoped sub-layer, said first and second sub-layers having substantially equal high carbon densities of at least about 2.0 gm/cm3.
- 2. The medium as in claim 1, wherein:said protective overcoat layer (c) has a combined thickness of said first and second sub-layers (c1+c2) not greater than about 30 Å.
- 3. The medium as in claim 2, wherein:said second, N-doped sub-layer (c2) has a thickness from about 3 to about 9 Å.
- 4. The medium as in claim 1, wherein:said stack of thin film layers (b) comprises a stack of layers for a magnetic or magneto-optical (MO) recording medium.
- 5. The medium as in claim 4, wherein:said substrate (a) is disk-shaped.
- 6. The medium as in claim 1, further comprising:(d) a lubricant topcoat layer on said protective overcoat layer (c).
- 7. A hard, abrasion and corrosion-resistant material adapted for forming a protective overcoat layer of a magnetic or magneto-optical (MO) recording medium, which material comprises a layer including a first region of nitrogen (N)-doped, amorphous carbon or hydrogenated carbon (C:H) having a high carbon density of at least about 2.0 gm/cm3 and a second region of undoped, amorphous carbon or hydrogenated carbon (C:H) having a high carbon density of at least about 2.0 gm/cm3, wherein said layer has an overall thickness not greater than about 30 Å, said first region of undoped, high carbon density, amorphous carbon or hydrogenated carbon (C:H) forms a first, lower sub-layer adapted for contact with an uppermost layer of a said recording medium, and said second region of N-doped, high carbon density, amorphous carbon or hydrogenated carbon (C:H) forms an about 3 to about 9 Å thick second, upper sub-layer on said first, lower sub-layer.
- 8. A magnetic or magneto-optical (MO) recording medium comprising a stack of thin film layers and a protective overcoat layer formed of the material according to claim 7 on an uppermost layer of said layer stack.
- 9. A recording medium comprising:(a) a substrate including thereon a stacked plurality of thin film layers; and (b) means less than about 30 Å thick and having a high carbon atom density of at least about 2.0 gm/cm3 for protecting said stacked plurality of thin film layers against wear and corrosion while providing increased bonded lubricant ratio and decreased water contact angle, said protecting means comprising a layer including a first region of nitrogen (N)-doped, amorphous carbon or hydrogenated carbon (C:H) having a high carbon density of at least about 2.0 gm/cm3 and a second region of undoped, amorphous carbon or hydrogenated carbon (C:H) having a high carbon density of at least about 2.0 gm/cm3, said first region of undoped, high carbon density, amorphous carbon or hydrogenated carbon (C:H) forming a first, lower sub-layer in contact with an uppermost layer of said recording medium, and said second region of N-doped, high carbon density, amorphous carbon or hydrogenated carbon (C:H) forming an about 3 to about 9 Å thick second, upper sub-layer on said first, lower sub-layer.
CROSS-REFERENCE TO PROVISIONAL APPLICATION
This application claims priority from U.S. provisional patent application Serial No. 60/312,694 filed Aug. 15, 2001, the entire disclosure of which is incorporated herein by reference.
US Referenced Citations (14)
Non-Patent Literature Citations (1)
Entry |
Veerasamy, Vijayen, Tetrahedral Amorphous Carbon, Apr. 1994, University of Cambridge UK,p. 173. |
Provisional Applications (1)
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Number |
Date |
Country |
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60/312694 |
Aug 2001 |
US |