Claims
- 1. A reproduction apparatus for magnetooptical recording, characterized by comprising:
- (a) means for rotating a disk-shaped multilayered magnetooptical recording medium comprising a first layer, serving as a recording layer, in which data is recorded in the form of a bit having upward magnetization and a bit having downward magnetization and which has a perpendicular magnetic anisotropy, and a second layer, serving as a reference layer, which has a perpendicular magnetic anisotropy having magnetization aligned in an upward or downward direction;
- (b) reproduction magnetic field applying means for transcribing data recorded in said first layer to said second layer;
- (c) a linearly polarized light source; and
- (d) reproduction means for receiving reflection light of the linearly polarized light radiated on said second layer and reproducing data included in the reflection light in the form of an electrical signal.
- 2. An apparatus according to claim 1, wherein the magnetic field H.sub.R of the reproduction magnetic field applying means satisfies the following inequality:
- H.sub.C2 (.sigma..sub.w /2M.sub.S2 t.sub.2)<.vertline.H.sub.R .vertline.<H.sub.C2 +(.sigma..sub.w /2M.sub.S2 t.sub.2)
- where
- H.sub.C1 : coercivity of first layer
- H.sub.C2 : coercivity of second layer
- M.sub.S1 : saturation magnetic moment of first layer
- M.sub.S2 : saturation magnetic moment of second layer
- t.sub.1 : film thickness of first layer
- t.sub.2 : film thickness of second layer
- .sigma..sub.w : interface magnetic wall energy
- H.sub.R : reproduction field.
- 3. A reproduction apparatus according to claim 1 or 2, wherein said medium is of an antiparallel type.
- 4. A reproduction apparatus for magnetooptical recording, characterized by comprising:
- (a) means for rotating a disk-shaped multilayered magnetooptical recording medium comprising a first layer, serving as a recording layer, in which data is recorded in the form of a bit having upward magnetization and a bit having downward magnetization and which has a perpendicular magnetic anisotropy, and a second layer, serving as a reproducing layer which has a perpendicular magnetic anisotropy and is able to have magnetization aligned in an upward or downward direction;
- (b) non-modulated magnetic field applying means for orienting a direction of magnetization of said second layer;
- (c) a linearly polarized light source; and
- (d) reproduction means for receiving reflection light of the linearly polarized light radiated on said second layer and reproducing data included in the reflection light in the form of an electrical signal.
- 5. A reproduction apparatus according to claim 4, wherein said medium is of an antiparallel type.
- 6. A reproduction apparatus for magnetooptical recording, characterized by comprising:
- (a) means for rotating a disk-shaped multilayered magnetooptical recording medium comprising a first layer in which data is recorded in the form of a bit having upward magnetization and a bit having downward magnetization and which has a perpendicular magnetic anisotropy, and a second layer which has a perpendicular magnetic anisotropy having magnetization aligned in an upward or downward direction, the first and second layers being exchange-coupled to each other and the first layer being formed with a bit having magnetization direction controlled by the magnetization direction of the second layer;
- (b) a linearly polarized light source; and
- (c) reproduction means for receiving reflection light of the linearly polarized light radiated on said second layer and reproducing data included in the reflection light in the form of an electrical signal.
- 7. A reproduction apparatus for magnetooptical recording, characterized by comprising:
- (a) means for rotating a disk-shaped multilayered magnetooptical recording medium comprising a first layer in which data is recorded in the form of a bit having upward magnetization and a bit having downward magnetization and which has a perpendicular magnetic anisotropy, and a second layer which has a perpendicular magnetic anisotropy having magnetization aligned in an upward or downward direction, the first and second layers being exchange-coupled to each other and the first layer being formed with a bit having magnetization direction controlled by the magnetization direction of the second layer;
- (b) a linearly polarized light source;
- (c) reproduction means for receiving reflection light of the linearly polarized light radiated on said second layer and reproducing data included in the reflection light in the form of an electrical signal; and
- (d) magnetic field applying means for applying a magnetic field having a predetermined intensity to a portion of said medium to which said light is radiated.
Priority Claims (5)
Number |
Date |
Country |
Kind |
60-26775 |
Jun 1985 |
JPX |
|
60-01423 |
Sep 1985 |
JPX |
|
60-17313 |
Sep 1985 |
JPX |
|
61-08608 |
Sep 1986 |
JPX |
|
61-291728 |
Dec 1986 |
JPX |
|
CROSS-REFERENCE TO RELATED APPLICATION
This is a continuation of application Ser. No. 08/092,615 filed Jul. 16, 1993 (now abandoned), which is a division of application Ser. No. 07/453,255 filed Dec. 20, 1989 (now U.S. Pat. No. 5,239,524), which is a continuation of application Ser. No. 07/090,973 filed Aug. 31, 1987 (abandoned), which is a continuation-in-part of application Ser. No. 06/870,350 filed Jun. 4, 1986 (abandoned).
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4628485 |
Tanaka et al. |
Dec 1986 |
|
4910622 |
Saito et al. |
Mar 1990 |
|
Foreign Referenced Citations (3)
Number |
Date |
Country |
0 051 296 |
May 1982 |
EPX |
5850639 |
Mar 1983 |
JPX |
5857646 |
Apr 1983 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
453255 |
Dec 1989 |
|
Continuations (2)
|
Number |
Date |
Country |
Parent |
92615 |
Jul 1993 |
|
Parent |
90973 |
Aug 1987 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
870350 |
Jun 1986 |
|