Claims
- 1. An optical amplification module having an amplification band within a range of 1490 nm to 1520 nm, comprising:
a Tm-doped optical waveguide having an optical waveguide region doped with Tm; and an Er-doped optical waveguide optically connected to said Tm-doped optical waveguide and having an optical waveguide region doped with Er.
- 2. An optical amplification module according to claim 1, further comprising a gain equalizing filter arranged upstream, downstream, or midstream of said Er-doped optical waveguide, said gain equalizing filter equalizing a gain of said Er-doped optical waveguide in a wavelength band within a range of 1490 nm to 1520 nm.
- 3. An optical amplification module according to claim 1, further comprising a cutoff filter arranged upstream, downstream, or midstream of said Er-doped optical waveguide, said cutoff filter cutting off light of a wavelength band not less than the wavelength of 1530 nm.
- 4. An optical amplification module according to claim 1, further comprising a first optical coupler for supplying 0.98 μm-band pumping light into said Er-doped optical waveguide.
- 5. An optical amplification module according to claim 1, further comprising a second optical coupler for supplying 1.05 μm-band or 1.4 μm-band pumping light and 1.2 μm-band or 1.55-to-1.65 μm-band pumping light into said Tm-doped optical waveguide.
- 6. An optical amplification module having an amplification band within a range of 1490 nm to 1520 nm, comprising:
an Er-doped optical waveguide having an optical waveguide region doped with Er; and a temperature adjustor for maintaining temperature of said Er-doped optical waveguide at room temperature or more.
- 7. An optical amplification module according to claim 6, wherein said temperature adjustor maintains the temperature of said Er-doped optical waveguide at 65° C. or more.
- 8. An optical amplification module having an amplification band within a range of 1490 nm to 1520 nm, said optical amplification module including an Er-doped optical waveguide having an optical waveguide regoin co-doped with Al2O3 and P2O5 together with Er.
- 9. An optical amplification module according to claim 1, wherein each of said Tm-doped optical waveguide and said Er-doped optical waveguide includes an optical fiber.
- 10. An optical amplifier for amplifying signal light inputted through an input end thereof and outputting the amplified signal light from an output end thereof, comprising:
an optical amplification module according to claim 1, arranged between said input end and said output end, and including said Tm-doped optical waveguide and said Er-doped optical waveguide; a first pumping light supply system for supplying pumping light of a wavelength capable of pumping Er ions, into said Er-doped optical waveguide; and a second pumping light supply system for supplying pumping light of a wavelength capable of pumping Tm ions, into said Tm-doped optical waveguide.
- 11. An optical amplifier having an amplification band within a range of 1490 nm to 1520 nm, comprising:
an Er-doped optical waveguide having an optical waveguide region doped with Er; and a pumping light supply system for supplying pumping light of a 0.98 μm band not greater than the wavelength of 976 nm, into said Er-doped optical waveguide.
- 12. An optical amplifier according to claim 10, wherein said Er-doped optical waveguide is arranged upstream of said Tm-doped optical waveguide.
- 13. An optical communication system including an optical amplifier according to claim 10, said optical communication system transmitting signal light of a plurality of channels of a signal wavelength band within the region of 1490 nm to 1520 nm, said optical amplifier amplifying the signal light in the signal wavelength band.
- 14. An optical communication system according to claim 13, wherein the signal wavelength band comprises a plurality of bands spaced by one or more unused wavelength regions with a bandwidth of 4 nm to 6 nm.
- 15. An optical communication system according to claim 14, wherein Raman amplification pumping light of at least one of said unused wavelength regions is supplied into an optical transmission line to Raman-amplify the signal light in said optical transmission line.
- 16. A white light source, comprising:
an optical amplification module according to claim 1, including said Tm-doped optical waveguide and said Er-doped optical waveguide; a first pumping light supply system for supplying pumping light of a wavelength capable of pumping Er ions, into said Er-doped optical waveguide; and a second pumping light supply system for supplying pumping light of a wavelength capable of pumping Tm ions, into said Tm-doped optical waveguide, said white light source outputting spontaneous emissions each generated in said Tm-doped optical waveguide and said Er-doped optical waveguide with supply of said pumping light.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 2002-059085 |
Mar 2002 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to Provisional Application Serial No. 60/364,112 filed on Mar. 15, 2002, which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60364112 |
Mar 2002 |
US |