Claims
- 1. A multiple stage fiber amplifier system having optically coupled first and second amplifier stages with optical isolator between the first and second stages of the amplifier system comprising:
an optical bypass element coupled between the first and second amplifier stages for bypassing the optical isolator between the first and second stages of the amplifier system to filter out any signal wavelengths present in the bypass so as not to lead to multiple path interference (MPI) with these same signals propagating directly from the first stage to the second stage of the amplifier system.
- 2. The multiple stage fiber amplifier system as defined in claim 1 wherein the optical bypass element includes a coiled fiber.
- 3. The multiple stage fiber amplifier system of claim 2 wherein the coiled fiber has at least ten turns or more.
- 4. The multiple stage fiber amplifier system of claim 2 wherein the coiled fiber comprises a Corning HI-1060 (a.k.a. Flexcor™) fiber coiled about a one inch diameter core.
- 5. The multiple stage fiber amplifier system of claim 2 wherein the coiled fiber in the bypass element is an attenuating element for attenuating signal wavelengths passing therethrough.
- 6. The multiple stage fiber amplifier system of claim 1 wherein the bypass element comprises a fiber that is lossy for signal wavelengths but transmissive of pump wavelengths.
- 7. A multistage optical amplifier system for amplifying an optical signal in a forward direction comprising:
first and second amplifier stages configured to amplify the optical signal propagating in the forward direction in the presence of pump light, from the first amplifier to the second amplifier stage, said first and second stages having an optical isolator disposed therebetween; and, a bypass element disposed in parallel with the optical isolator for allowing pump light to bypass the optical isolator and to attenuate any signal light propagating through the bypass element.
- 8. An optical amplifier system as defined in claim 7, wherein the substantially most of the signal light propagating through the bypass element is attenuated.
- 9. An optical amplifier system as defined in claim 7 wherein the bypass element includes a wavelength dependent element for directing most of the signal light through the isolator and for directing most of the pump light through the parallel path to avoid the optical isolator.
- 10. An optical amplifier as defined in claim 9 wherein the wavelength dependent element is a wavelength dependent coupler.
- 11. An optical amplifier system as defined in claim 10, wherein the substantially most of the signal light propagating through the bypass element is attenuated.
- 12. An optical isolator as defined in claim 7 wherein pump light propagating through the bypass element is directed to propagate to the second stage.
- 13. An optical isolator as defined in claim 7 wherein pump light propagating through the bypass element is directed to propagate to the first stage.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims priority to provisional application having serial No. 60/305,090 entitled “Low Cost Multiple Pass Interference Mitigation Method and Apparatus” filed on Jul. 12, 2001 which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60305090 |
Jul 2001 |
US |