IP Library Patent Application 12003916
Patent Application
App. No. 12/003,916

Optical recording medium

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Quick Facts
Patent No.
US None
App. No.
12/003,916
Abstract

A reliable optical recording medium is provided which includes an information layer exhibiting small changes in the optical properties even during long-term storage. The optical recording medium includes the information layer including a recording film having an extinction coefficient of 0.4 or less at the wavelength of a laser beam used for recording and reproducing. The information layer further includes a light absorbing film having an extinction coefficient of 1.5 or less at the wavelength of the laser beam, and the extinction coefficient of the light absorbing film is greater than that of the recording film.

Claims (36)

1 . An optical recording medium comprising:

an information layer including a recording film having an extinction coefficient of 0.4 or less at a wavelength of a laser beam used for recording and reproducing, wherein

the information layer further includes a light absorbing film having an extinction coefficient of 1.5 or less at the wavelength of the laser beam, the extinction coefficient of the light absorbing film being greater than that of the recording film.

2 . The optical recording medium according to claim 1 , wherein the extinction coefficient of the light absorbing film is 0.3 or more.

3 . The optical recording medium according to claim 1 , wherein following inequality (I) is satisfied:

( k A ×t A )/( k R ×t R )>0.35  (I)

wherein k R is the extinction coefficient of the recording film, t R is a thickness of the recording film, k A is the extinction coefficient of the light absorbing film, and t A is a thickness of the light absorbing film.

4 . The optical recording medium according to claim 2 , wherein following inequality (I) is satisfied:

( k A ×t A )/( k R ×t R )>0.35  (I)

wherein k R is the extinction coefficient of the recording film, t R is a thickness of the recording film, k A is the extinction coefficient of the light absorbing film, and t A is a thickness of the light absorbing film.

5 . The optical recording medium according to claim 1 , wherein the light absorbing film has a thermal conductivity of 30 W/(mK) or less in a bulk state.

6 . The optical recording medium according to claim 2 , wherein the light absorbing film has a thermal conductivity of 30 W/(mK) or less in a bulk state.

7 . The optical recording medium according to claim 3 , wherein the light absorbing film has a thermal conductivity of 30 W/(mK) or less in a bulk state.

8 . The optical recording medium according to claim 1 , wherein the light absorbing film is made of an oxide.

9 . The optical recording medium according to claim 2 , wherein the light absorbing film is made of an oxide.

10 . The optical recording medium according to claim 3 , wherein the light absorbing film is made of an oxide.

11 . The optical recording medium according to claim 5 , wherein the light absorbing film is made of an oxide.

12 . The optical recording medium according to claim 1 , wherein a relationship represented by following inequality (II) is satisfied:

k R ×t R <7 nm  (II)

wherein k R is the extinction coefficient of the recording film, and t R is a thickness of the recording film.

13 . The optical recording medium according to claim 2 , wherein a relationship represented by following inequality (II) is satisfied:

k R ×t R <7 nm  (II)

wherein k R is the extinction coefficient of the recording film, and t R is a thickness of the recording film.

14 . The optical recording medium according to claim 3 , wherein a relationship represented by following inequality (II) is satisfied:

k R ×t R <7 nm  (II)

wherein k R is the extinction coefficient of the recording film, and t R is a thickness of the recording film.

15 . The optical recording medium according to claim 5 , wherein a relationship represented by following inequality (II) is satisfied:

k R ×t R <7 nm  (II)

wherein k R is the extinction coefficient of the recording film, and t R is a thickness of the recording film.

16 . The optical recording medium according to claim 8 , wherein a relationship represented by following inequality (II) is satisfied:

k R ×t R <7 nm  (II)

wherein k R is the extinction coefficient of the recording film, and t R is a thickness of the recording film.

17 . The optical recording medium according to claim 1 , wherein the recording film consists essentially of Bi, O, and M where M is at least one element selected from the group consisting of Fe, Ge, Sb, Mg, Ca, Zr, Nb, Zn, Al, Si, Na, K, Sn, Y, Dy, Ce, Tb, Ti, V, Ta, Mo, W, Mn, In, Li, Sr, Ba, Sc, La, Nd, Sm, Gd, Ho, Cr, Co, Ni, Cu, Ga, and Pb, and a ratio of number of O atoms to number of all atoms constituting the recording film is 62% or more.

18 . The optical recording medium according to claim 1 , wherein the recording film consists essentially of Bi and O, and a ratio of number of O atoms to number of all atoms constituting the recording film is 62% or more.

19 . The optical recording medium according to claim 1 , wherein the wavelength of the laser light used for recording and reproducing is in range of 375 to 435 nm.

20 . The optical recording medium according to claim 1 , wherein tracks where recording marks are to be formed are formed with a track pitch within range of 0.1 to 0.5 μm.

Assignments (2)
CHANGE OF ADDRESS Recorded Jun 12, 2013
From: TDK CORPORATION
To: TDK CORPORATION
Reel/Frame 030651/0687 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2008
From: MISHIMA, KOJI; KIKUKAWA, TAKASHI; ITOH, HIDETAKE
To: TDK CORPORATION
Reel/Frame 020354/0129 →