Claims
- 1. A mirror comprising a multi-layer thin film, wherein said multi-layer thin film comprises a first layer and a second layer,
said first layer has a reflection surface plane, said second layer has a contact plane with a substrate, and an angle between said reflection surface plane and said contact plane is 45° or equal to an angle between (100) plane orientation and a (111) plane orientation in a silicon crystal.
- 2. The mirror according to claim 1, wherein said mirror comprises one of a gold film, a lamination film of rhodium film—nickel film—gold film, a lamination film of platinum film—nickel film—gold film, a lamination film of palladium film—nickel film—gold film, a lamination film of gold film—nickel film—gold film, a lamination film of nickel film—boron alloy film—nickel film—gold film, a lamination film of nickel film—gold film, a lamination film of chrome film—nickel film—gold film, a photosensitive polyimide film, a lamination film of gold film—(Ni—P) film/Ni film—P film—Au film, and a lamination film of Au film—Pt film—Au film.
- 3. The mirror according to claim 1, wherein said mirror has a concave portion which is filled with a material.
- 4. The mirror according to claim 3, wherein said material is one of a resin composition containing an active energy line polymerization initiator and an active energy line reaction resin.
- 5. The mirror according to claim 4, wherein said active energy line reaction resin is one of phenol novolak type epoxy resin, cresol/volalc type epoxy resin, glycylamine type epoxy resin and biphenyl type epoxy resin.
- 6. The mirror according to claim 1, wherein said mirror has a shape of a pyramid or a triangular pole, in which both ends are cut down.
- 7. The mirror according to claim 6, wherein said reflection surface plane is flat.
- 8. The mirror according to claim 6, wherein said reflection surface plane is a curved recess surface.
- 9. The mirror according to claim 1, further comprising:
a connection film portion orthogonal to an optical axis.
- 10. A mirror comprising a gold layer, wherein said gold layer has a reflection surface plane and a contact plane, an angle between said reflection surface plane and said contact plane is 45° or equal to an angle between (100) plane orientation and a (111) plane orientation in a silicon crystal.
- 11. The mirror according to claim 10, wherein said mirror comprises one of said gold film, a lamination film of rhodium film—nickel film—said gold film, a lamination film of platinum film—nickel film—said gold film, a lamination film of palladium film—nickel film—said gold film, a lamination film of gold film—nickel film—said gold film, a lamination film of nickel film—boron alloy film—nickel film—said gold film, a lamination film of nickel film—said gold film, a lamination film of chrome film—nickel film—said gold film, a lamination film of gold film—(Ni—P) film/Ni film—P film—said gold film, and a lamination film of gold film—Pt film—said gold film.
- 12. The mirror according to claim 10, wherein said mirror has a concave portion which is filled with a material.
- 13. The mirror according to claim 12, wherein said material is one of a resin composition containing an active energy line polymerization initiator and an active energy line reaction resin.
- 14. The mirror according to claim 13, wherein said active energy line reaction resin is one of phenol novolak type epoxy resin, cresol/volak type epoxy resin, glycylamine type epoxy resin and biphenyl type epoxy resin.
- 15. The mirror according to claim 10, wherein said mirror has a shape of a pyramid or a triangular pole, in which both ends are cut down.
- 16. The mirror according to claim 15, wherein said reflection surface plane is flat.
- 17. The mirror according to claim 15, wherein said reflection surface plane is a curved recess surface.
- 18. The mirror according to claim 10, further comprising:
a connection film portion orthogonal to an optical axis.
- 19. An optical circuit comprising:
a substrate; an optical fiber or an optical waveguide provided for said substrate; a photodiode or a surface emission type laser provided for said substrate; and a mirror connected with said substrate, wherein said mirror comprises a multi-layer thin film, which comprises a first layer and a second layer, said first layer is a reflection surface plane, said second layer has a contact plane with a substrate, an angle between said reflection surface plane and said contact plane is 45° or equal to an angle between (100) plane orientation and a (111) plane orientation in a silicon crystal.
- 20. The optical circuit according to claim 19, further comprising:
at least a cantilever of said substrate, wherein said mirror is installed in a tip portion of said at least a cantilever; and an expanding and contracting member which moves said tip portion upwardly and downwardly.
- 21. The optical circuit according to claim 20, wherein said expanding and contracting member is one of a piezoelectric element, an electric distortion actuator, a magnetic distortion actuator, and a phase transition material.
- 22. The optical circuit according to claim 19, wherein said mirror comprises one of a gold film, a lamination film of rhodium film—nickel film—gold film, a lamination film of platinum film—nickel film—gold film, a lamination film of palladium film—nickel film—gold film, a lamination film of gold film—nickel film—gold film, a lamination film of nickel film—boron alloy film—nickel film—gold film, a lamination film of nickel film—gold film, a lamination film of chrome film—nickel film—gold film, a photosensitive polyimide film, a lamination film of gold film—(Ni—P) film/Ni film—P film—Au film, and a lamination film of Au film—Pt film—Au film.
- 23. The optical circuit according to claim 19, wherein said mirror has a concave portion which is filled with a material.
- 24. The optical circuit according to claim 23, wherein said material is one of a resin composition containing an active energy line polymerization initiator and an active energy line reaction resin.
- 25. The optical circuit according to claim 24, wherein said active energy line reaction resin is one of phenol novolak type epoxy resin, cresol/volak type epoxy resin, glycylamine type epoxy resin and biphenyl type epoxy resin.
- 26. The optical circuit according to claim 19, wherein said mirror has a shape of a pyramid or a triangular pole, in which both ends are cut down.
- 27. The optical circuit according to claim 26, wherein said reflection surface plane is flat.
- 28. The optical circuit according to claim 26, wherein said reflection surface plane is a curved recess surface.
- 29. The optical circuit according to claim 19, further comprising:
a connection film portion orthogonal to an optical axis.
- 30. An optical circuit comprising:
a substrate; an optical fiber or an optical waveguide provided for said substrate; a photodiode or a surface emission type laser provided for said substrate; and a mirror jointed with said substrate, wherein said mirror comprises a gold layer, which comprises a reflection surface plane and a contact plane, an angle between said reflection surface plane and said contact plane is 45° or equal to an angle between (100) plane orientation and a (111) plane orientation in a silicon crystal.
- 31. The optical circuit according to claim 30, further comprising:
at least a cantilever of said substrate, wherein said mirror is installed in a tip portion of said at least a cantilever; and an expanding and contracting member which moves said tip portion upwardly and downwardly.
- 32. The optical circuit according to claim 31, wherein said expanding and contracting member is one of a piezoelectric element, an electric distortion actuator, a magnetic distortion actuator, and a phase transition material.
- 33. The optical circuit according to claim 30, wherein said mirror comprises one of a gold film, a lamination film of rhodium film—nickel film—gold film, a lamination film of platinum film—nickel film—gold film, a lamination film of palladium film—nickel film—gold film, a lamination film of gold film—nickel film—gold film, a lamination film of nickel film—boron alloy film—nickel film—gold film, a lamination film of nickel film—gold film, a lamination film of chrome film—nickel film—gold film, a photosensitive polyimide film, a lamination film of gold film—(Ni—P) film/Ni film—P film—Au film, and a lamination film of Au film—Pt film—Au film.
- 34. The optical circuit according to claim 30, wherein said mirror has a concave portion which is filled with a material.
- 35. The optical circuit according to claim 34, wherein said material is one of a resin composition containing an active energy line polymerization initiator and an active energy line reaction resin.
- 36. The optical circuit according to claim 35, wherein said active energy line reaction resin is one of phenol novolak type epoxy resin, cresol/volak type epoxy resin, glycylamine type epoxy resin and biphenyl type epoxy resin.
- 37. The optical circuit according to claim 30, wherein said mirror has a shape of a pyramid or a triangular pole, in which both ends are cut down.
- 38. The optical circuit according to claim 37, wherein said reflection surface plane is flat.
- 39. The optical circuit according to claim 37, wherein said reflection surface plane is a curved recess surface.
- 40. The optical circuit according to claim 30, further comprising:
a connection film portion orthogonal to an optical axis.
Priority Claims (2)
Number |
Date |
Country |
Kind |
189043/2000 |
Jun 2000 |
JP |
|
368960/2000 |
Dec 2000 |
JP |
|
RELATED APPLICATION
[0001] This application is a continuation of U.S. application Ser. No. 09/796,257, filed Feb. 28, 2001.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09796257 |
Feb 2001 |
US |
Child |
10681019 |
Oct 2003 |
US |