Claims
- 1. A magneto-optical method of recording data in a direct overwrite manner to a perpendicular magnetized film consisting of a single magnetic layer, comprising:
- (a) a recording step of forming, in the perpendicular magnetized film, bubble magnetic domains representing the data whose magnetization direction are in a first direction and whose radii are larger than a predetermined minimum stable domain radius by simultaneously applying a recording laser beam whose intensity is modulated according to the data and a recording magnetic field to the perpendicular magnetized film; and
- (b) a correcting step of applying a correcting magnetic field to the perpendicular magnetized film in a second direction opposite to the first direction, the correcting magnetic field having a intensity H.sub.s smaller than a wall coercivity H.sub.c of the bubble magnetic domains, the intensity H.sub.S satisfying the equation:
- R=.sigma..sub.B /{2M.sub.S (H.sub.C -H.sub.S)}
- where R is the predetermined minimum stable domain radius, .sigma..sub.S is a domain wall energy density of the bubble magnetic domains, and Ms is a saturation magnetization of the perpendicular magnetized film.
- 2. A magneto-optical method of recording data in a direct overwrite manner to a perpendicular magnetized film consisting of a single magnetic layer, comprising:
- (a) a recording step of forming, in the perpendicular magnetized film, bubble magnetic domains representing the data whose magnetization directions are in first and second mutually opposite directions and whose radii are larger than a predetermined minimum stable domain radius by simultaneously applying a recording laser beam and a recording magnetic field whose direction is modulated according to the data to the perpendicular magnetized film; and
- (b) a correcting step of applying at least one of a first correcting magnetic filed in the first direction and a second correcting magnetic field in the second direction to the perpendicular magnetized film, each of the first and the second correcting magnetic fields having an intensity H.sub.s smaller than a wall coercivity H.sub.c of the bubble magnetic domains, the intensity H.sub.s satisfying the equation:
- R=.sigma..sub.B /{2M.sub.S (H.sub.C -H.sub.S) }
- where R is the predetermined minimum stable domain radius, .sigma..sub.B is a domain wall energy density of the bubble magnetic domains, and M.sub.s is a saturation magnetization of the perpendicular magnetized film.
- 3. The method of claim 2, wherein the correcting step includes the steps of applying the first correcting magnetic field to the perpendicular magnetized film, and then applying the second correcting magnetic field to the perpendicular magnetized film.
- 4. A magneto-optical method of recording data in a direct overwrite manner to a perpendicular magnetized film including a memory layer and a reference layer mutually exchange-coupled, the reference layer having an apparent coercivity Hr smaller than an apparent coercivity H.sub.m of the memory layer, the method comprising:
- (a) a recording step of forming, in the memory layer, bubble magnetic domains representing the data whose magnetization directions are in a first direction by simultaneously applying a recording laser beam whose intensity is modulated according to the data and a recording magnetic field to the perpendicular magnetized film;
- (b) a correcting step of, after the recording step, applying a correcting magnetic field to the perpendicular magnetic film in a second direction opposite to the first direction, the correcting magnetic field having a predetermined intensity H.sub.s smaller than the apparent coercivity H.sub.r of the reference layer;
- (c) an initializing step of, after the correcting step, applying an initializing magnetic field to the perpendicular magnetized film in the first direction, the initializing magnetic field having a predetermined intensity H.sub.i larger than the apparent coercivity H.sub.r of the reference layer and smaller than the apparent coercivity H.sub.m of the memory layer; and
- (d) after the recording step and before the correcting step, applying an additional initializing magnetic field to the perpendicular magnetized film in the first direction, the additional initializing magnetic field having an intensity larger than the apparent coercivity H.sub.r of the reference layer and smaller than the apparent coercivity H.sub.m of the memory layer.
- 5. A magneto-optical apparatus for recording data in a direct overwrite manner to a perpendicular magnetized film, as a recording medium, consisting of a single magnetic layer, the apparatus comprising:
- (a) moving means for moving the recording medium along a course;
- (b) recording means disposed at a predetermined position along said course of the recording medium for applying a recording laser beam whose intensity is modulated according to data to be recorded and a recording magnetic field to the recording medium so as to form, in the perpendicular magnetized film, bubble magnetic domains representing the data whose magnetization directions are in a first direction and whose radii are larger than a predetermined minimum stable domain radius; and
- (c) correcting means disposed downstream of said recording means along said course of the recording medium for applying a correcting magnetic field to the perpendicular magnetized film in a second direction opposite to the first direction, the magnetic field having an intensity H.sub.s smaller than a wall coercivity H.sub.c of the magnetic domains, the intensity H.sub.s satisfying the equation:
- R=.sigma..sub.B /{2M.sub.S (H.sub.C -H.sub.S)}
- where R is the predetermined minimum stable domain radius, .sigma..sub.B is a domain wall energy density of the bubble magnetic domains, and M.sub.s is a saturation magnetization of the perpendicular magnetized film.
- 6. The magneto-optical recording apparatus of claim 5, wherein said moving means rotates the recording medium; and said recording means and said correcting means are disposed along an arcuate course of said recording medium at two different angular positions, respectively.
- 7. A magneto-optical apparatus for recording data in a direct overwrite manner to a perpendicular magnetized film, as a recording medium, consisting of a single magnetic layer, the apparatus comprising:
- (a) moving means for moving the recording medium along a course;
- (b) recording means disposed at a predetermined position along said course of the recording medium for applying a recording laser beam and a recording magnetic field whose direction is modulated according to data to be recorded to the recording medium so as to form, in the perpendicular magnetized film, bubble magnetic domains representing the data whose magnetization directions are in first and second mutually opposite directions and whose radii are larger than a predetermined minimum stable domain radius; and
- (c) correcting means disposed downstream of said recording means along said course of the recording medium for applying at least one of a first correcting magnetic field in the first direction and a second correcting magnetic field in the second direction to the perpendicular magnetized film, each of the first and the second correcting magnetic fields having an intensity H.sub.s smaller than a wall coercivity H.sub.c of the magnetic domains, the intensity H.sub.s satisfying the equation:
- R=.sigma..sub.B /{2M.sub.S (H.sub.C -H.sub.S)}
- where R is the predetermined minimum stable domain radius, .sigma..sub.B is a domain wall energy density of the bubble magnetic domains, and M.sub.s is a saturation magnetization of the perpendicular magnetized film.
- 8. The magneto-optical recording apparatus of claim 7, wherein said moving means rotates the recording medium; and said recording means and said correcting means are disposed along an arcuate course of said recording medium at two different angular positions, respectively.
- 9. The magneto-optical recording apparatus of claim 7, wherein the correcting means includes first magnet means for applying the first correcting magnetic field to the recording medium, and second magnet means disposed downstream of the first magnet means along said course of the recording medium for applying the second correcting magnetic field to the recording medium.
- 10. A magneto optical apparatus for recording data in a direct overwrite manner to a perpendicular magnetized film, as a recording medium, including a memory layer and a reference layer mutually exchange-coupled, the reference layer having an apparent coercivity H.sub.r smaller than an apparent coercivity H.sub.m of the memory layer, the apparatus comprising:
- (a) moving means for moving the recording medium along a course;
- (b) recording means disposed at a predetermined position along said course of the recording medium for applying a recording laser beam whose intensity is modulated according to data to be recorded and a recording magnetic field to the recording medium so as to form, in the memory layer, bubble magnetic domains representing the data whose magnetization direction are in a first direction;
- (c) correcting means disposed downstream of the recording means along said course of the recording medium for applying a correcting magnetic field to the recording medium in a second direction opposite to the first direction, the correcting magnetic field having a predetermined intensity H.sub.s smaller than the apparent coercivity H.sub.s of the reference layer;
- (d) initializing means disposed downstream of the correcting means along said course of the recording medium for applying an initializing magnetic field to the recording medium in the first direction, the initializing magnetic field having a predetermined intensity H.sub.i larger than the apparent coercivity H.sub.r of the reference layer and smaller than the apparent coercivity H.sub.m of the memory layer; and
- (e) means disposed between the recording means and the correcting means along said course of the recording medium for applying an additional initializing magnetic field to the recording medium in the first direction, the additional initializing magnetic field having an intensity larger than the apparent coercivity H.sub.r of the reference layer and smaller than the apparent coercivity H.sub.m of the memory layer.
- 11. The magneto-optical recording apparatus of claim 10, wherein said moving means rotates the recording medium; and said recording means, said correcting means and said initializing means are disposed along an arcuate moving course of said recording medium at two different angular positions, respectively.
- 12. A magneto-optical method of reproducing data represented by bubble magnetic domains formed in a perpendicular magnetized film consisting of a single magnetic layer, the bubble magnetic domains being magnetized in a first direction, the method comprising:
- (a) a correcting step of applying a correcting magnetic field to the perpendicular magnetized film in a second direction opposite to the first direction, the correcting magnetic field having an intensity H.sub.s smaller than a wall coercivity H.sub.c of the bubble magnetic domains, the intensity H.sub.s satisfying the equation:
- R=.sigma..sub.B /{2M.sub.S (H.sub.C -H.sub.S)}
- where R is the predetermined minimum stable domain radius smaller than the radii of the bubble magnetic domains representing the data, .sigma..sub.B is a domain wall energy density of the bubble magnetic domains, and M.sub.s is a saturation magnetization of the perpendicular magnetized film; and
- (b) a reproducing step of, after the correcting step, reproducing the data by magneto-optically detecting the bubble magnetic domains in the perpendicular magnetized film.
- 13. A magneto-optical method of reproducing data represented by bubble magnetic domains formed in a perpendicular magnetized film consisting of a single magnetic layer, the bubble magnetic domains being magnetized in first and second mutually opposite directions, the method comprising:
- (a) a correcting step of applying at least one of a first correcting magnetic field in the first direction and a second correcting magnetic field in the second direction, each of the first and the second correcting magnetic fields having an intensity H.sub.s smaller than a wall coercivity H.sub.c of the bubble magnetic domains, the intensity H.sub.s satisfying the equation:
- R=.sigma..sub.B /{2M.sub.S (H.sub.C -H.sub.S)}
- where R is the predetermined minimum stable domain radius smaller than the radii of the bubble magnetic domains representing the data, .sigma..sub.B is a domain wall energy density of the bubble magnetic domains, and M.sub.s is a saturation magnetization of the perpendicular magnetized film; and
- (b) a reproducing step of, after the correcting step, reproducing the data by magneto-optically detecting the bubble magnetic domains in the perpendicular magnetized film.
- 14. A magneto-optical apparatus for reproducing data represented by bubble magnetic domains formed in a perpendicular magnetized film, as a recording medium, consisting of a single magnetic layer, the bubble magnetic domains being magnetized in a first direction, the apparatus comprising:
- (a) moving means for moving the recording medium along a course;
- (b) correcting means disposed at a predetermined position along said course of the recording medium for applying a correcting magnetic field to the recording medium in a second direction opposite to the first direction, the correcting magnetic field having an intensity H.sub.s smaller than a wall coercivity H.sub.c of the bubble magnetic domains, the intensity H.sub.s satisfying the equation:
- R=.sigma..sub.B /{2M.sub.S (H.sub.C -H.sub.S)}
- where R is a predetermined minimum stable domain radius smaller than the radii of the bubble magnetic domains representing the data, .sigma..sub.B is a domain wall energy density of the bubble magnetic domains, and M.sub.s is a saturation magnetization of the perpendicular magnetized film; and
- (c) reproducing means disposed downstream of the correcting means along said course of the recording medium for reproducing the data by magneto-optically detecting the bubble magnetic domains in the recording medium.
- 15. A magneto-optical apparatus for reproducing data represented by bubble magnetic domains formed in a perpendicular magnetized film, as a recording medium, consisting of a single magnetic layer, the bubble magnetic domains being magnetized in first and second mutually opposite directions, the apparatus comprising:
- (a) moving means for moving the recording medium along a course;
- (b) correcting means for applying at least one of a first correcting magnetic field in the first direction and a second correcting magnetic field in the second direction to the recording medium, each of the first and the second correcting magnetic fields having an intensity H.sub.s smaller than a wall coercivity H.sub.c of the bubble magnetic domains, the intensity H.sub.s satisfying the equation:
- R=.sigma..sub.B /{2M.sub.S (H.sub.C -H.sub.S)}
- where R is a predetermined minimum stable domain radius smaller than the radii of the bubble magnetic domains representing the data, .sigma..sub.B is a domain wall energy density of the bubble magnetic domains, and M.sub.s is a saturation magnetization of the perpendicular magnetized film; and
- (c) reproducing means disposed downstream of the correcting means along said course of the recording medium for reproducing the data by magneto-optically detecting the bubble magnetic domains in the recording medium.
- 16. A magneto-optical method of recording data in a direct overwrite manner to a perpendicular magnetized film including a memory layer and a reference layer mutually exchange-coupled, the reference layer having an apparent coercivity Hr smaller than an apparent coercivity Hm of the memory layer, the memory layer is a rare earth-transition metal alloy ferromagnetic film dominant in transition metal magnetic moment at room temperature, the reference layer is a rare earth-transition metal alloy ferromagnetic film dominant in rare earth metal magnetic moment at room temperature, the method comprising:
- (a) a recording step of forming, in the memory layer, bubble magnetic domains representing the data whose magnetization directions are in a first direction and whose radii are larger than a predetermined minimum stable domain radius by simultaneously applying a recording laser beam whose intensity is modulated according to the data and a recording magnetic field to the perpendicular magnetized film in the first direction;
- (b) a first initializing step of, after the recording step, applying an initializing magnetic field to the perpendicular magnetized film in the first direction, the first initializing magnetic field having an intensity larger than the apparent coercivity Hr of the reference layer and smaller than the apparent coercivity Hm of the memory layer;
- (c) a correcting step of, after the first initializing step, applying a correcting magnetic field to the perpendicular magnetic film in a second direction opposite to the first direction, the correcting magnetic field having a predetermined intensity Hs than the apparent coercivity Hr of the reference layer, satisfying the equation:
- R<.sigma.B.times.h1/(-.sigma.w+2Ms.times.h1.times.(Hm-Hs))
- where R is the predetermined minimum stable domain radius .sigma. B is a side domain wall energy density of the bubble magnetic domains, .sigma. w is an interface domain wall energy density of the bubble magnetic domains, h1 is the thickness of the memory layer, and Ms is a saturation magnetization of the memory layer; and
- (d) a second initializing step of, after the correcting step, applying an initializing magnetic field to the perpendicular magnetized film in the first direction, the initializing magnetic field having a predetermined intensity Hi larger than the apparent coercivity Hr of the reference layer and smaller than the apparent coercivity Hm of the memory layer.
- 17. A magneto-optical method of recording data in a direct overwrite manner to a perpendicular magnetized film including a memory layer and a reference layer mutually exchange-coupled, the reference layer having an apparent coercivity Hr smaller than an apparent coercivity Hm of the memory layer, the memory layer is a rare earth-transition metal alloy ferromagnetic film dominant in transition metal magnetic moment at room temperature, the reference layer is a rare earth-transition metal alloy ferromagnetic film dominant in rare earth metal magnetic moment at room temperature, the method comprising:
- (a) a recording step of forming, in the memory layer, bubble magnetic domains representing the data whose magnetization directions are in a first direction and whose radii are larger than a predetermined minimum stable domain radius by simultaneously applying a recording laser beam whose intensity is modulated according to the data and a recording magnetic field to the perpendicular magnetized film in the first direction;
- (b) a correcting step of, after the recording step, applying a correcting magnetic field to the perpendicular magnetic film in a second direction oppose to the first direction, the correcting magnetic field having a predetermined intensity Hs smaller than the apparent coercivity Hr of the reference layer, satisfying the equation:
- R<.sigma.B.times.h1/{-.sigma.w+2Ms.times.h1.times.(Hm-Hs)}
- where R is the predetermined minimum stable domain radius, .sigma. B is a side domain wall energy density of the bubble magnetic domains, .sigma. w is an interface domain wall energy density of the bubble magnetic domains, h1 is the thickness of the memory layer, and Ms is a saturation magnetization of the memory layer; and
- (c) an initializing step of, after the correcting step, applying an initializing magnetic field to the perpendicular magnetized film in the first direction, the initializing magnetic field having a predetermined intensity Hi larger than the apparent coercivity Hr of the reference layer and smaller than the apparent coercivity Hm of the memory layer.
- 18. A magneto-optical apparatus for recording data in a direct overwrite manner to a perpendicular magnetized film, as a recording medium, including a memory layer and a reference layer mutually exchange-coupled, the reference layer having an apparent coercivity Hr smaller than an apparent coercivity Hm of the memory layer, the memory layer is a rare earth-transition metal alloy ferromagnetic film dominant in transition metal magnetic moment at room temperature, the reference layer is a rare earth-transition metal alloy ferromagnetic film dominant in rare earth metal magnetic moment at room temperature, the apparatus comprising:
- (a) moving means for moving the recording medium along a course;
- (b) recording means disposed at a predetermined position along said course of the recording medium for applying a recording laser beam whose intensity is modulated according to data to be recorded and a recording magnetic field to the recording film in a first direction so as to form, in the memory layer, bubble magnetic domains representing the data whose magnetization directions are in the first direction and whose radii are larger than a predetermined minimum stable domain radius;
- (c) a first initializing means for disposed downstream of the recording means along said course of the recording medium for applying an initializing magnetic field to the recording medium for applying an initializing magnetic field to the recording medium in the first direction, the initializing magnetic field having a predetermined intensity Hi larger than the apparent coercivity Hr of the reference layer and smaller than the apparent coercivity Hm of the memory layer;
- (d) correcting means disposed downstream of the first initializing means along said course of the recording medium for applying a correcting magnetic field to the recording medium in a second direction opposite to the first direction, the correcting magnetic filed having a predetermined intensity Hs smaller than the apparent coercivity Hr of the reference layer, satisfying the equation:
- R<.sigma.B.times.h1/{-.sigma.w+2Ms.times.h1.times.(Hm-Hs)}
- where R is the predetermined minimum stable domain radius, .sigma.B is a side domain wall energy density of the bubble magnetic domain, .sigma.w is an interface domain wall energy density of the bubble magnetic domains, h1 is the thickness of the memory layer, and Ms is a saturation magnetization of the memory layer;
- (e) a second initializing means disposed downstream of the correcting means along said course of the recording medium for applying an initializing magnetic field to the recording medium for applying an initializing magnetic field to the recording medium in the first direction, the initializing magnetic field having a predetermined intensity Hi larger than the apparent coercivity Hr of the reference layer and smaller than the apparent coercivity Hm of the memory layer; and
- (f) said moving means rotates the recording medium; and said recording means, said first initializing means, said correcting means and said second initializing means are disposed along an arcuate moving course of said recording medium at four different angular positions respectively.
- 19. A magneto-optical apparatus for recording data in a direct overwrite manner to perpendicular magnetized film, as a recording medium, including a memory layer and a reference layer mutually exchange-coupled, the reference layer having an apparent coercivity Hr smaller than an apparent coercivity Hm of the memory layer, the memory layer is a rare earth-transition metal alloy ferromagnetic film dominant in transition metal magnetic movement at room temperature, the reference layer is a rate earth-transition metal alloy ferromagnetic film dominant in rare earth metal magnetic movement at room temperature, the apparatus comprising:
- (a) moving means for moving the recording medium along a course;
- (b) recording means disposed at a predetermined position along said course of the recording medium for applying a recording laser beam whose intensity is modulated according to data to be recorded and a recording magnetic field to the recording film in a first direction so as to form, in the memory layer, bubble magnetic domains representing the data whose magnetization directions are in the first direction and whose radii are larger than a predetermined minimum stable domain radius;
- (c) correcting means disposed downstream of the recording means along said course of the recording medium for applying a correcting magnetic field to the recording medium in a second direction opposite to the first direction, the correcting magnetic field having a predetermined intensity Hs smaller than the apparent coercivity Hr of the reference layer, satisfying the equation:
- R<.sigma.B.times.h1/{-.sigma.w+2Ms.times.h1.times.(Hm-Hs)}
- where R is the predetermined minimum stable domain radius, .sigma. B is a side domain wall energy density of the bubble magnetic domains, .sigma. w is an interface domain wall energy density of the bubble magnetic domains, h1 is the thickness of the memory layer, and Ms is a saturation magnetization of the memory layer;
- (d) initializing means disposed downstream of the correcting means along said course of the recording medium for applying an initializing magnetic field to the recording medium for applying an initializing magnetic field to the recording medium in the first direction, the initialing magnetic field having a predetermined intensity Hi larger than the apparent coercivity Hr of the reference layer and smaller than the apparent coercivity Hm of the memory layer; and
- (e) said moving means rotates the recording medium; and said recording means, said correcting means and said initializing means are disposed along an arcuate moving course of said recording medium at three different angular positions respectively.
Priority Claims (5)
Number |
Date |
Country |
Kind |
2-216501 |
Aug 1990 |
JPX |
|
2-216502 |
Aug 1990 |
JPX |
|
2-216503 |
Aug 1990 |
JPX |
|
2-276728 |
Oct 1990 |
JPX |
|
3-187755 |
Jul 1991 |
JPX |
|
Parent Case Info
This is a divisional of copending U.S. application Ser. No. 07/744,995, filed on Aug. 14, 1991, now abandoned.
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Entry |
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Divisions (1)
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Number |
Date |
Country |
Parent |
744995 |
Aug 1991 |
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