Claims
- 1. A method of using an optical recording medium, comprising:
- (a) providing an optical recording medium comprising:
- (i) a transparent substrate having two surfaces,
- (ii) a first dielectric layer formed on one surface of said transparent substrate,
- (iii) a recording layer formed on said first dielectric layer,
- (iv) a second dielectric layer formed on said recording layer, said second dielectric layer being thinner than said first dielectric layer and being 35-70 nm thick, and
- (v) a reflecting layer formed on said second dielectric layer, said reflecting layer being 70-120 nm thick; wherein said recording layer has properties of becoming amorphous after its temperature is increased, then melting and quenching by absorbing energy from the irradiation of a laser beam, and of crystallizing its amorphous state by a temperature rise; and
- (b) recording information by a Modified Constant Angular Velocity recording method which comprises changing recording frequencies in accordance with linear velocity; wherein:
- (i) said linear velocity is in the range of 5-12 m/s;
- (ii) an inner circumference recording pulse width is larger than an outer circumference recording pulse width, and
- (iii) a ratio of said inner circumference recording pulse width to said outer circumference recording pulse width is 1.2 or more.
- 2. The method as in claim 1, wherein the recording pulse width is 40-60 ns at 5 m/s linear velocity and is 30-40 ns at 12 m/s linear velocity.
- 3. The method as in claim 1, the Modified Constant Angular Velocity recording method is applied so as to record information by changing a record starting point at the maximum of 7.75 .mu.m within 5-12 m/s linear velocity.
- 4. The method as in claim 1, wherein the thin recording layer is 18-30 nm thick.
- 5. The method as in claim 1, wherein the first dielectric layer is 140-210 nm thick.
- 6. The method as in claim 1, wherein the first dielectric layer comprises a mixed material of ZnS and SiO.sub.2 ; wherein the second dielectric layer comprises a mixed material of ZnS and SiO.sub.2 ; and wherein said mixed material comprises SiO.sub.2 at 5-40 mol % and ZnS at 60-95 mol %.
- 7. The method as in claim 1, wherein the reflecting layer comprises Al as a main material and at least one metal selected from the group consisting of Ti, Ni, Cr, Cu, Ag, Au, Pt, Mg, Si and Mo.
- 8. The method as in claim 1, wherein the recording layer comprises Te, Ge and Sb.
- 9. The method as in claim 8, wherein the recording layer further comprises nitrogen.
- 10. The method as in claim 1, wherein the recording layer comprises GeTe, Sb.sub.2 Te.sub.3, Sb and nitrogen.
- 11. The method as in claim 10, wherein the recording layer is composed so that 0.2.ltoreq.b.ltoreq.0.5 where the mol ratio of Sb/Sb.sub.2 Te.sub.3 is b.
- 12. The method as in claim 1, wherein the optical recording medium further comprises a 3-15 .mu.m thick overcoat resin protective layer on the reflecting layer; said overcoat resin protective layer generating tensile stress.
Priority Claims (1)
Number |
Date |
Country |
Kind |
6-155186 |
Jun 1994 |
JPX |
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Parent Case Info
This application is a division of U.S. application Ser. No. 08/452,497 filed May 30, 1995 now allowed.
US Referenced Citations (10)
Foreign Referenced Citations (5)
Number |
Date |
Country |
A-0 462 413 |
Jan 1992 |
EPX |
2-56746 |
Feb 1990 |
JPX |
3-114884 |
May 1991 |
JPX |
4-134644 |
May 1992 |
JPX |
5-174425 |
Jul 1993 |
JPX |
Non-Patent Literature Citations (2)
Entry |
Abstract of JP 4-141488, "Optical Recording Medium and Manufacture Thereof", Katsumi et al. (May 1992). |
Abstract of JP 4-358334, "Optical Information Recording Medium", Hidemi etal. (Dec. 1992). |
Divisions (1)
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Number |
Date |
Country |
Parent |
452497 |
May 1995 |
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