Claims
- 1. An optical fiber comprising:
- a core and a cladding surrounding said core, including an optical functioning glass comprising a host glass doped with Nd.sup.3+ as an active ion and doped with a quantity of U.sup.4+ which absorbs an emission at about a 1.06 .mu.m wavelength band to suppress induced emission of Nd.sup.3+ at about said 1.06 .mu.m wavelength band and to increase a probability of the induced emission of Nd.sup.3+ at about a 1.3 .mu.m wavelength band.
- 2. An optically active apparatus comprising:
- (1) an optical fiber comprising a core and a cladding surrounding said core, said core including an optical functioning glass comprising a host glass doped with Nd.sup.3+ as an active ion and doped with a quantity of U.sup.4+ which absorbs an emission at about a 1.06 .mu.m wavelength band to suppress induced emission of Nd.sup.3+ at about said 1.06 .mu.m wavelength band and to increase a probability of the induced emission of Nd.sup.3+ at about a 1.3 .mu.m wavelength band;
- (2) a light source for generating excitation light for exciting Nd.sup.3+ ; and
- (3) optical means for directing said excitation light from said light source to said optical fiber.
- 3. An apparatus according to claim 2, wherein said optical fiber transmits light at or near said 1.3-.mu.m wavelength band.
- 4. An apparatus according to claim 2, wherein said light source generates excitation light at or near a 0.80-.mu.m wavelength band.
- 5. A fiber amplifier comprising:
- (1) an optically active apparatus comprising:
- (a) an optical fiber comprising: a core and a cladding surrounding said core, said core including an optical functioning glass comprising a host glass doped with Nd.sup.3+ as an active ion and doped with a quantity of U.sup.4+ which absorbs an emission at about a 1.06 .mu.m wavelength band to suppress induced emission of Nd.sup.3+ at about said 1.06 .mu.m wavelength band and to increase a probability of the induced emission of Nd.sup.3+ at about a 1.3 .mu.m wavelength band;
- (b) a light source for generating excitation light for exciting Nd.sup.3+ ; and
- (c) optical means for directing said excitation light from said light source to said optical fiber; and
- (2) coupling means for coupling signal light at or near said 1.3-.mu.m wavelength band to said optical fiber.
- 6. A fiber laser comprising:
- (1) an optically active apparatus comprising:
- (a) an optical fiber comprising: a core and a cladding surrounding said core, said core including an optical functioning glass comprising a host glass doped with Nd.sup.3+ as an active ion and doped with a quantity of U.sup.4+ which absorbs an emission at about a 1.06 .mu.m wavelength band to supress induced emission of Nd.sup.3+ at about said 1.06 .mu.m wavelength band and to increase a probability of the induced emission of Nd.sup.3+ at about a 1.3 .mu.m wavelength band;
- (b) a light source for generating excitation light for exciting Nd.sup.3+ ; and
- (c) optical means for directing said excitation light from said light source to said optical fiber; and
- (2) resonator means for feeding light at or near said 1.3-.mu.m wavelength from said optical fiber back to said optical fiber.
- 7. An optical waveguide device comprising:
- a core portion and a cladding portion partially surrounding said core portion, said core portion including an optical functioning glass comprising a host glass doped with Nd.sup.3+ as an active ion and doped with a quantity of U.sup.4+ which absorbs an emission at about a 1.06 .mu.m wavelength band to suppress induced emission of Nd.sup.3+ at about said 1.06 .mu.m wavelength band and to increase a probability of an induced emission of Nd.sup.3+ at about a 1.3 .mu.m wavelength band.
- 8. An optically active apparatus comprising:
- (1) an optical waveguide comprising a core portion and a cladding portion partially surrounding said core portion, said core portion including an optical functioning glass comprising a host glass doped with Nd.sup.3+ as an active ion and doped with a quantity of U.sup.4+ which absorbs an emission at about a 1.06 .mu.m wavelength band to suppress induced emission of Nd.sup.3+ at about said 1.06 .mu.m wavelength band and to increase a probability of an induced emission of Nd.sup.3+ at about a 1.3 .mu.m wavelength band;
- (2) a light source for generating excitation light for exciting Nd.sup.3+ ; and
- (3) optical means for directing said excitation light from said light source to said optical waveguide device.
- 9. An apparatus according to claim 8, wherein said optical waveguide device transmits light at or near said 1.3-.mu.m wavelength band.
- 10. An apparatus according to claim 8, wherein said light source generates excitation light at or near a 0.80-.mu.m wavelength band.
- 11. A waveguide amplifier comprising:
- (1) an optically active apparatus comprising:
- (a) an optical fiber comprising: a core portion and a cladding portion partially surrounding said core portion, said core portion including and optical functioning glass comprising a host glass doped with Nd.sup.3+ as an active ion and doped with a quantity of U.sup.4+ which absorbs an emission at about a 1.06 .mu.m wavelength band to suppress induced emission of Nd.sup.3+ at about said 1.06 .mu.m wavelength band and to increase a probability of an induced emission of Nd.sup.3+ at about a 1.3 .mu.m wavelength band
- (b) a light source for generating excitation light for exciting Nd.sup.3+ ; and
- (c) optical means for directing said excitation light from said light source to said optical fiber; and
- (2) coupling means for coupling signal light at or near said 1.3-.mu.m wavelength band to said optical waveguide device.
- 12. A waveguide laser comprising:
- (1) an optically active apparatus comprising:
- (a) an optical waveguide comprising: a core portion and a cladding portion partially surrounding said core portion, said core portion including an optical functioning glass comprising a host glass doped with Nd.sup.3+ as an active ion and doped with a quantity of U.sup.4+ which absorbs an emission at about a 1.06 .mu.m wavelength band to suppress induced emission of Nd.sup.3+ at about said 1.06 .mu.m wavelength band and to increase a probability of an induced emission of Nd.sup.3+ at about a 1.3 .mu.m wavelength band;
- (b) a light source for generating excitation light for exciting Nd.sup.3+ ; and
- (c) optical means for directing said excitation light from said light source to said optical fiber; and
- (2) resonator means for feeding light at or near said 1.3-.mu.m wavelength band from said optical waveguide device back to said optical waveguide device.
- 13. A fiber amplifier comprising:
- (1) an optically active apparatus comprising:
- (a) an optical fiber comprising: a core consisting of an optical functioning glass containing Nd.sup.3+ as an active ion doped in a host glass, wherein an uranium ion is doped in said core or a portion surrounding said core, wherein said optical fiber transmits light at or near a 1.3 .mu.m wavelength band;
- (b) a light source for generating excitation light for exciting Nd.sup.3+ ; and
- (c) optical means for directing said excitation light from said light source to said optical fiber; and
- (2) coupling means for coupling signal light at or near said 1.3 .mu.m wavelength band to said optical fiber.
- 14. A waveguide amplifier comprising:
- (1) an optically active apparatus comprising:
- (a) an optical waveguide device comprising: a core consisting of an optical functioning glass containing Nd.sup.3+ as an active ion doped in a host glass, wherein an uranium ion is doped in said core or a portion surrounding said core, wherein said optical waveguide device transmits light at or near a 1.3 .mu.m wavelength band;
- (b) a light source for generating excitation light for exciting Nd.sup.3+ ; and
- (c) optical means for directing said excitation light from said light source to said optical waveguide device; and
- (2) coupling means for coupling signal light at or near said 1.3 .mu.m wavelength band to said optical waveguide device.
Priority Claims (1)
Number |
Date |
Country |
Kind |
3-12178 |
Feb 1991 |
JPX |
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Parent Case Info
This is a division of application No. 07/829,477, filed Feb. 3, 1992, now U.S. Pat. No. 5,244,846.
US Referenced Citations (12)
Foreign Referenced Citations (4)
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Date |
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0462613 |
Dec 1991 |
EPX |
63-112440 |
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JPX |
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GBX |
2082168 |
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Non-Patent Literature Citations (2)
Entry |
Syt'ko et al., "Luminescent Converter for Solar-Cell Collectors Based on U022+ and ND3+ Coactivated Phosphate Glass", Applied Solar Energy, vol. 25, No. 5, 1989, New York, pp. 22-25. |
D. Becherescu et al., "Fluorescent Glasses", Chemical Abstracts, vol. 113, No. 24, Dec. 1990, Columbus, OH, Abstract No. 216566P. |
Divisions (1)
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Number |
Date |
Country |
Parent |
829477 |
Feb 1992 |
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