Claims
- 1. A optical transmitter for digitally modulated RF sub-carriers comprising:
an electroabsorption modulator integrated distributed feedback laser having an electroabsorption modulator section adapted for transmitting the digitally modulated RF sub-carriers in the sub-octave range; and a circuit configured for applying a negative bias to the electroabsorption modulator integrated distributed feedback laser; wherein the negative bias is selected to increase modulation index of the electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser above a modulation index of an electroabsorption modulator section of an electroabsorption modulator integrated distributed feedback laser having a zero bias, without causing in-band non-linear distortion.
- 2. The optical transmitter as recited in claim 1 wherein the electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser is biased so as to minimize CTB.
- 3. The optical transmitter as recited in claim 1 wherein the negative bias is approximately between −1.20 volts and −1.25 volts for InGaAsP/InP based material.
- 4. The optical transmitter as recited in claim 1 wherein the modulation index of the electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser is increased while not causing an increase in bit error rate.
- 5. A system for optical transmission of digitally modulated RF sub-carriers comprising:
an electroabsorption modulator integrated distributed feedback laser; a modulation circuit configured for coupling the digitally modulated RF sub-carriers in the sub-octave frequency range to an electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser; and, a circuit for applying a negative bias to the electroabsorption modulator section; wherein the negative bias is selected to increase modulation index of the electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser above a modulation index of an electroabsorption modulator section of an electroabsorption modulator integrated distributed feedback laser having a zero bias, without causing in-band non-linear distortion.
- 6. The system as recited in claim 5 wherein the electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser is biased so as to minimize CTB.
- 7. The system as recited in claim 5 wherein the negative bias is approximately between −1.20 volts and −1.25 volts for InGaAsP/InP based material.
- 8. The system as recited in claim 5 wherein the modulation index of the electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser is increased while not causing an increase in bit error rate.
- 9. A method for optical transmission of digitally modulated RF sub-carriers comprising the following steps:
modulating an electroabsorption modulator section of an electroabsorption modulator integrated distributed feedback laser with the digitally modulated RF sub-carriers in the sub-octave range; applying a negative bias to the electroabsorption modulator section; wherein the negative bias is selected to increase modulation index of the electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser above a modulation index of an electroabsorption modulator section of an electroabsorption modulator integrated distributed feedback laser having a zero bias, without causing in-band non-linear distortion.
- 10. The method as recited in claim 9 wherein the step of applying a negative bias further comprises applying the negative bias so as to minimize CTB.
- 11. The method as recited in claim 9 wherein the negative bias is approximately between −1.20 volts and −1.25 volts for InGaAsP/InP based material.
- 12. The method as recited in claim 9 wherein the modulation index of the electroabsorption modulator section of the electroabsorption modulator integrated distributed feedback laser is increased while not causing an increase in bit error rate.
CROSS REFERENCES TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional application Ser. No. 60/228,387, filed on Aug. 28, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60228387 |
Aug 2000 |
US |