Claims
- 1. A variable dispersion compensator, which applies a phase shift to an optical signal to compensate dispersion in said optical signal, characterized by comprising
optical splitting means, which inputs an optical signal that is the subject of dispersion compensation, and splits said optical signal for every frequency component within a predetermined frequency band; reflecting means, which reflects each of the respective said frequency components that are split by said optical splitting means to apply a predetermined phase shift to each frequency component, and is configured with the reflection position for each of the respective said frequency components being movable in the direction of optical signal propagation; and optical combining means, which combines said frequency components reflected by said reflecting means to give a dispersion compensated optical signal.
- 2. A variable dispersion compensator according to claim 1, characterized by said optical splitting means and said optical combining means comprising a single optical combining/splitting means.
- 3. A variable dispersion compensator according to claim 1, characterized by said reflecting means comprising a plurality of reflective mirrors that are divided corresponding to said frequency components; and each of the respective said plurality of reflective mirrors being a movable mirror capable of having the reflective surface thereof shifted separately in said direction of optical signal propagation.
- 4. A variable dispersion compensator according to claim 3, characterized by said movable mirror, which comprises each of the respective said plurality of reflective mirrors, being configured to allow the use of electrostatic force, which develops from application of voltage between a first electrode provided on said movable mirror and a second electrode provided at a predetermined position relative to said first electrode, to separately shift the reflective surface thereof.
- 5. A variable dispersion compensator according to claim 1, characterized by said reflecting means comprising a single reflective mirror; and said single reflective mirror being a movable mirror capable of having respective reflective portions corresponding to said frequency components shift in said direction of optical signal propagation through deformation of the entire reflective surface thereof.
- 6. A variable dispersion compensator according to claim 5, characterized by said movable mirror, which is said single reflective mirror, being configured to allow the use of electrostatic force, which develops from application of voltage between a first electrode provided on said movable mirror and a second electrode provided at a predetermined position relative to said first electrode, to cause deformation of the entire reflective surface thereof.
- 7. A variable dispersion compensator according to claim 5, characterized in that said movable mirror, which is said single reflective mirror, is designed such that a drive portion provided in the vicinity of the center thereof is driven in said direction of optical signal propagation by driving means, so as to cause deformation of the entire reflective surface of the mirror.
- 8. A variable dispersion compensator according to claim 5, characterized in that said movable mirror, which is said single reflective mirror, is designed such that, while a fixed portion provided in the vicinity of the center thereof is fixed, drive portions provided respectively in the vicinity of the end portions on both sides thereof are driven in said direction of optical signal propagation by driving means, so as to cause deformation of the entire reflective surface of the mirror.
- 9. A variable dispersion compensator according to claim 5, characterized in that said movable mirror, which is said single reflective mirror, is designed such that a prescribed portion thereof is heated and displaced by heating means, so as to cause deformation of the entire reflective surface thereof.
- 10. A variable dispersion compensator according to claim 1, characterized by the array of reflective mirrors or the shape of the reflective surface, which configures said reflecting means, being approximately parabolic in relation to said frequency component to be reflected.
- 11. An optical transmission system characterized by comprising
an optical transmission line, which propagates an optical signal having a frequency component within a predetermined frequency band; and the variable dispersion compensator according to claim 1, which is disposed at a predetermined position upon said optical transmission line and compensates dispersion that develops in said optical signal propagated through said optical transmission line.
- 12. An optical transmission system according to claim 11, characterized by the bit rate of said optical signal being 10 Gbps or faster.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-105143 |
Apr 2001 |
JP |
|
2001-179088 |
Jun 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to Provisional Application Serial No. 60/280,743 filed Apr. 3, 2001, which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60280743 |
Apr 2001 |
US |