Claims
- 1. A method of recording information, comprising the steps of:
- (a) providing a recording element comprising a write-once amorphous thin-film optical recording layer of an alloy having a composition within a polygon in a ternary composition diagram of antimony, indium, and tin; wherein
- (i) the composition diagram is ##STR1## ; and (ii) the polygon has the following vertices and corresponding coordinates in atom percent:
- ______________________________________ CoordinatesVertices Sb Sn In______________________________________a 97 0 3b 85 15 0c 60 40 0d 48 42 10e 44 10 46f 64 5 31g 70 0 30______________________________________
- ; and
- (b) focusing an information modulated laser beam on the recording layer to form a pattern of crystalline and amorphous areas in the layer; wherein all the crystalline areas are in the same state with a higher reflectivity than the amorphous areas.
- 2. The method of claim 1 wherein the alloy has a composition within a polygon in a ternary composition diagram of antimony, indium and tin, wherein:
- (a) the composition diagram is ##STR2## ; and (b) the polygon has the following vertices and corresponding coordinates in atom percent:
- ______________________________________ CoordinatesVertices Sb Sn In______________________________________h 80 20 0i 65 35 0j 50 40 10k 50 20 30______________________________________
- 3. The method of claim 1 wherein the alloy has a composition within a polygon in a ternary composition diagram of antimony, indium and tin, wherein:
- (i) the composition diagram is ##STR3## ; and (ii) the polygon has the following vertices and corresponding coordinates in atom percent:
- ______________________________________ CoordinatesVertices Sb Sn In______________________________________h 80 20 0i 65 35 0j 50 40 10l 48 20 32q 58 20 22o 75 3 22p 84 3 13______________________________________
- 4. The method of claim 1 wherein the alloy has a composition within a polygon in a ternary composition diagram of antimony, indium and tin, wherein:
- (i) the composition diagram is ##STR4## ; and (ii) the polygon has the following vertices and corresponding coordinates in atom percent:
- ______________________________________ CoordinatesVertices Sb Sn In______________________________________h 80 20 0i 65 35 0j 50 40 10l 48 20 32q 58 20 22o 75 3 22p 84 3 13______________________________________
- 5. The method of claim 1 wherein the alloy comprises Sb.sub.65 Sn.sub.20 In.sub.15 ; Sb.sub.61 Sn.sub.24 In.sub.15 ; Sb.sub.62 Sn.sub.26 In.sub.12 ; Sb.sub.53 Sn.sub.34 In.sub.13 ; Sb.sub.50 Sn.sub.40 In.sub.10 ; Sb.sub.70 Sn.sub.21 In.sub.9 ; Sb.sub.57 Sn.sub.22 In.sub.21 ; Sb.sub.69 Sn.sub.21 In.sub.10 ; Sb.sub.51 Sn.sub.30 In.sub.19 ; Sb.sub.60 Sn.sub.35 In.sub.5 or Sb.sub.60 Sn.sub.24 In.sub.16.
- 6. The method of claim 1 wherein the element has a dynamic recording sensitivity of less than 6.5 mW.
- 7. The method of claim 6 wherein the element has a dynamic recording sensitivity in the range of 3.5 to 6.35 mW.
- 8. The method of claim 1 wherein the boundary between the amorphous and crystalline areas is sharp and less than 0.02 .mu.m in length.
- 9. The method of claim 8 wherein the boundary is less than 0.01 .mu.m.
- 10. The method of claim 8 or 9 wherein the recorded pattern has a dynamic CNR of at least 60 decibels.
- 11. The method of claim 8 or 9 wherein the recorded pattern has a dynamic CNR of 60 to 65 decibels.
CROSS REFERENCE TO RELATED APPLICATIONS
This is a divisional of application Ser. No. 194,605, filed May 16, 1988, pending, which is a continuation-in-part of our earlier filed application Ser. No. 014,336 filed on Feb. 13, 1987, now abandoned.
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Divisions (1)
|
Number |
Date |
Country |
Parent |
194605 |
May 1988 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
14336 |
Feb 1987 |
|