US2005058055A1PendingUtilityA1

Optical recording medium, recording material, method of producing optical recording medium, and optical recording, reading and rewriting method

Priority: Mar 31, 2000Filed: Oct 27, 2004Published: Mar 17, 2005
Est. expiryMar 31, 2020(expired)· nominal 20-yr term from priority
G11B 2007/24312Y10T428/21G11B 2007/24308G11B 2007/24314G11B 2007/24316G11B 7/268G11B 2007/24322G11B 7/26G11B 7/00454G11B 7/243G11B 2007/2431G11B 7/2534
48
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Claims

Abstract

An optical recording medium including a recording layer which includes a reversible phase-change recording material, the recording layer being capable of writing information therein, reading written information therefrom, and rewriting written information by utilizing the reversible phase change of the phase-change recording material, wherein when a recording mark formed in the recording layer is repeatedly read 5000 times, using a continuous wave laser beam having such an intensity Pr that satisfies the condition of 1.1≦R≦2.0, in which R is σ repeat /σ 1 as defined in the specification, the optical recording medium satisfies a relationship of d 1 >d ow as defined in the specification. The phase-change recording material, a method of producing the optical recording medium, and a method of writing information in the optical recording medium, reading written information therefrom and rewriting written information therein are proposed.

Claims

exact text as granted — not AI-modified
1 - 49 . (canceled)  
   
   
       50 . An optical recording medium comprising a recording layer which comprises a phase-change recording material which is capable of performing a reversible phase change from a crystalline phase to an amorphous phase and vice versa by light irradiation of said phase-change recording material, 
 said recording layer being capable of writing information therein, reading written information therefrom, and rewriting written information by utilizing said reversible phase change of said phase-change recording material,    wherein when a recording mark formed in said recording layer is repeatedly read 5000 times, using a continuous wave laser beam having such an intensity Pr that satisfies the condition of 1.1≦R≦2.0, in which R is the ratio of a 5000 th  repeated reading jitter σ repeat  of a recording mark to a 1 st  reading jitter σ 1  of said recording mark, namely R is σ repeat /σ 1 , and a jitter increasing ratio of said 5000 th  repeated reading jitter σ repeat  to said 1 st  reading jitter σ 1  is d (=σ repeat /σ 1 ),    said optical recording medium satisfies a relationship of d 1 >d ow , in which d 1  is said jitter increasing ratio of an initial writing mark, and d ow  is a jitter increasing ratio of a 1000-times rewritten recording mark,    wherein said phase-change recording material comprises a pseudo binary composition which has an X-ray diffraction spectrum such that a first peak is observed at a Bragg (2θ) angle of 27° to 29° and a second peak is observed at a Bragg (2θ) angle of 40° to 43° when a CuKα line having a wavelength of 1.54 Å is used, wherein the second peak is wider than the first peak,    wherein said pseudo binary composition is represented by Sb—TeM, comprising two portions, one portion being represented by Sb, and the other portion being represented by TeM, in which M represents a metal compound comprising at least Sb or Ge, provided that when TeM is Sb 2 Te 3 , said pseudo binary composition is a pseudo binary eutectic composition, and that at least one of the portions represented by TeM comprises Sb, and at least one of the other portions represented by TeM comprises Ge.    
   
   
       51 . The optical recording medium as claimed in  claim 50 , wherein said pseudo binary composition has an X-ray diffraction spectrum that further includes a third peak observed at a Bragg (2θ) angle of 51° to 52.5°, and a fourth peak observed at a Bragg (2θ) angle of 58.5° to 61°.

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