Claims
- 1. An optical data storage system for writing and/or reading information with respect to an optical storage medium, the optical data storage system comprising:
an optical pickup including a focusing lens generating a near field and emitting a light beam to write and/or read the information; and the optical storage medium including
an optical transmissive layer having a thickness larger than one wavelength of the light beam and first and second surfaces opposing each other, wherein the first surface opposes the focusing lens, and a recording layer positioned in the second surface of said optical transmissive layer; wherein an interval between the first surface and a surface of the focusing lens opposing the first surface is smaller than one wavelength of the light beam.
- 2. The optical data storage system according to claim 1, wherein when said focusing lens is slanted with respect to said optical storage medium, an interval between a portion of said focusing lens farthest from the first surface of said optical storage medium and the first surface of said optical storage medium is maintained within one wavelength of the used light.
- 3. The optical data storage system according to claim 1, wherein said optical transmissive layer has a thickness of approximately several micrometers to several hundred micrometers.
- 4. The optical data storage system according to claim 3, wherein said optical transmissive layer is a substrate having an unevenness structure formed on the second surface thereof, wherein the unevenness structure forms a pre-formatted structure for storing the information.
- 5. The optical data storage system according to claim 4, wherein said unevenness structure comprises a plurality of grooves or pits which are engraved toward the second surface of said optical transmissive layer.
- 6. The optical data storage system according to claim 5, wherein said plurality of grooves or pits each have a width of approximately 100-150 nm and said recording layer has a thickness of approximately 150-400 nm.
- 7. The optical data storage system according to claim 1, wherein an interval between the first surface of said optical transmissive layer and said focusing lens is less than ¼ of the wavelength of the light beam.
- 8. The optical data storage system according to claim 1, wherein said optical pickup comprises a focusing optical system having a numerical aperture of at least one.
- 9. The optical data storage system according to claim 8, wherein said focusing optical system is a catadioptric solid immersion optical system.
- 10. The optical data storage system according to claim 8, wherein said focusing optical system is a refractive type solid immersion lens.
- 11. The optical data storage system according to claim 8, further comprising:
a light transmission and reception portion to emit the light beam and detect the light beam reflected from the optical storage medium; a slider to float said focusing optical system from the first surface of said optical storage medium aerodynamically; and optical path changing means for transferring the light beam emitted from said light transmission and reception portion to said focusing optical system, and transferring the light beam reflected from said optical storage medium and passing through said focusing optical system to said light transmission and reception portion.
- 12. The optical storage medium according to claim 1, further comprising:
a substrate; a reflective layer formed on said substrate; a first dielectric layer formed on said reflective layer; said recording layer formed on said first dielectric layer; a second dielectric layer formed on said recording layer; a protective layer formed on said second dielectric layer; a lubricant film formed on said protective layer.
- 13. The optical storage medium according to claim 12, wherein:
said substrate is made of glass, polycarbonate, PMMA, or an acrylate resin, has an unevenness structure of a track pitch of 0.3-0.4 m and a groove depth of 50-800 Åsaid reflective layer is one of aluminum, nickel, copper, platinum, silver and gold, and has a thickness of 100-400 Å; said first and second dielectric layers are made of Si3N4 or ZnS—SiO2, the first dielectric layer has a thickness of 100-400 Å and the second dielectric layer has a thickness of 300-800 Å; said recording layer is made of one of TbFeCo, NdTbFeCo and TbFe, and has a thickness of 150-400 Å; said protective layer is one of optically organic transparent inorganic and inorganic material, and has a thickness of 5-100 m; and said lubricant film has a thickness of 1-3 nm and does not chemically react with said protective layer.
- 14. The optical data storage system medium according to claim 1, wherein said optical transmissive layer is a protective layer.
- 15. The optical data storage system according to claim 14, wherein said recording layer is formed of a plurality of grooves or pits, wherein said grooves or pits each have a width which is less than a thickness of said protective layer from the first surface to the grooves or pits.
- 16. The optical data storage system according to claim 1, further comprising a substrate formed at the second surface of said optical transmissive layer.
Priority Claims (2)
Number |
Date |
Country |
Kind |
98-38738 |
Sep 1998 |
KR |
|
99-5043 |
Feb 1999 |
KR |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional application of U.S. Ser. No. 09/301,607, now pending, which claims the benefit of Korean Application Nos. 98-38738, filed Sep. 18, 1998 and 99-5043, filed Feb. 12, 1999, in the Korean Patent Office and U.S. Provisional Patent Application No. 60/100,778, filed Sep. 18, 1998, the disclosures of which are incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60100778 |
Sep 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09301607 |
Apr 1999 |
US |
Child |
10151907 |
May 2002 |
US |