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| United States Patent | 5,991,068 |
| Massicott ,   et al. | November 23, 1999 |
In a gain-controlled erbium-doped optical amplifier, gain control is achieved by clamping the gain of a laser cavity to be equal to the overall cavity loss and by fixing the resonant wavelength of the amplifier to be at a first wavelength. When an optical signal to be amplified having a second wavelength different from the first wavelength passes through the amplifier the gain experienced by the signal depends entirely on the gain of the cavity, and not on the intensity of the signal. If the first wavelength is arranged to be at the peak of the sum of the absorption and emission cross sections of erbium, the amplifier exhibits minimum sensitivity to ambient changes in temperature.
| Inventors: | Massicott; Jennifer (Suffolk, GB); Wyatt; Richard (Suffolk, GB) |
| Assignee: | British Telecommunications public limited company (London, GB) |
| Appl. No.: | 693049 |
| Filed: | October 21, 1996 |
| PCT Filed: | February 20, 1995 |
| PCT NO: | PCT/GB95/00346 |
| 371 Date: | October 21, 1996 |
| 102(e) Date: | October 21, 1996 |
| PCT PUB.NO.: | WO95/22847 |
| PCT PUB. Date: | August 24, 1995 |
| Feb 18, 1994[EP] | 94301184 |
| Current U.S. Class: | 359/337; 359/340; 359/341.3; 359/346; 372/6; 372/33 |
| Intern'l Class: | H01S 003/06 |
| Field of Search: | 359/337,341,346 372/6,33 |
| 5088095 | Feb., 1992 | Zirngibl. | |
| 5128800 | Jul., 1992 | Zirngibl. | |
| 5155780 | Oct., 1992 | Zirngibl. | |
| 5239607 | Aug., 1993 | da Silva et al. | |
| Foreign Patent Documents | |||
| 0497491A2 | Aug., 1992 | EP. | |
| 0519648A2 | Dec., 1992 | EP. | |
| 9522847 | Aug., 1995 | WO. | |
"Gain Control in Erbium-Doped Fibre Amplifiers by Lasing at 1480nm with Photoinduced Bragg Gratings Written on Fibre Ends", Delevaque et al, Electronics Letters, Jun. 10, 1993, vol. 29 No. 12. "Automatic Optical Loss Compenstion with Erbium-Doped Fiber Amplifier", Okamura, Journal of Lightwave Technology, Aug. 10, 1992, No. 8. "Wavelength Flattened Saturated Erbium Amplifier using Multiple Side-Tap Bragg Gratings", Kashyap, Wyatt and McKee, Electronics Letters, May 27, 1993, vol. 29, No. 11. High Output Power from an Efficient Praseodymium-Doped Fluoride Fiber Amplifier, Whitley, Wyatt, Szebesta and Davey, IEEE Photonoics Technology Letters Apr. 5, 1993, No. 4. "1480nm Pumped Erbium Doped Fibre Amplifier with all Optical Automatic Gain Control", Massicott et al, Electronics Letters, Jun. 9, 1994, vol. 30, No. 12. "Gain Control in Erbium-Doped Fibre Amplifiers by an All-Optical Feedback Loop", Zirngibl, Electronics Letters Mar. 28, 1991, vol. 27, No. 7. "All-Optical Remote Gain Switching in Er-Doped Fibre Amplifiers", Zirngibl, Electronics Letters Jun. 20, 1991, vol. 27, No. 13. "An Optical Power Equalizer Based on One Er-Doped Fiber Amplifier", Zirngibl, IEEE Photonics Technology Letters, vol. 4, No. 4, Apr. 1992. Massicott et al, OSA Trends in Optics and Photonics, vol. 5, pp. 97-100, Jul. 13, 1996; abst. only herewith. Massicott et al, Electronics Letters, vol. 32, #9, pp. 816-817, Apr. 25, 1996; abst. only herewith. |
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