Claims
- 1. An optical transmitter, comprising:
a radiation source, which is adapted to generate a base optical beam with a base wavelength; and at least one modulator, which is coupled to modulate the base optical beam so as to generate multiple carrier beams at respective side-bands of the base wavelength and to introduce information into the carrier beams for transmission thereby to a receiver.
- 2. A transmitter according to claim 1, wherein the radiation source comprises a single laser source.
- 3. A transmitter according to claim 1, wherein the radiation source comprises a broadband source and a filter which filters an output of the broadband source to generate the base wavelength.
- 4. A transmitter according to claim 1, wherein the at least one modulator comprises a side-band generator which is adapted to modulate the base optical beam by at least one modulation method chosen from a group of modulation methods comprising amplitude modulation, frequency modulation, and phase modulation.
- 5. A transmitter according to claim 4, and comprising an optical component which is adapted to divide the multiple carrier beams into separate sub-beams.
- 6. A transmitter according to claim 4, and comprising one or more radio-frequency (RF) generators which supply respective RF signals to the side-band generator.
- 7. A transmitter according to claim 6, wherein respective levels of the one or more RF generators are adjusted so that levels of the side-bands are substantially equal one to another.
- 8. A transmitter according to claim 1, wherein the at least one modulator comprises one or more components which separate the base optical beam into respective sub-beams, the one or more components comprising at least one of an optical splitter and a filter.
- 9. A transmitter according to claim 8, and comprising respective sub-beam modulators which modulate each of the sub-beams so as to generate the multiple carrier beams, each sub-beam modulator being adapted to modulate its respective sub-beam by at least one modulation method chosen from a group of modulation methods comprising amplitude modulation, frequency modulation, and phase modulation.
- 10. A transmitter according to claim 9, and comprising an RF generator, wherein at least one of the sub-beam modulators is adapted to receive the information and an RF signal from the RF generator and to generate its respective modulated sub-beam responsive to the information and the RF signal.
- 11. A transmitter according to claim 1, wherein the at least one modulator comprises respective data modulators which modulate each of the carrier beams with the information, and wherein at least one of the data modulators is adapted to perform its modulation by at least one modulation method chosen from a group of modulation methods comprising amplitude modulation, frequency modulation, phase modulation, and polarization modulation.
- 12. A transmitter according to claim 1, and comprising a multiplexer which combines each of the carrier beams comprising the introduced information into an output beam.
- 13. A transmitter according to claim 1, wherein the at least one modulator is coupled to introduce a reference into at least one of the carrier beams, the reference conveying at least one of a frequency of the base optical beam and a frequency of the multiple carrier beams.
- 14. An optical transmitter, comprising:
a plurality of radiation sources, each of which is adapted to generate a base optical beam with a different base wavelength; and a plurality of modulators, each coupled respectively to one of the radiation sources, each of the modulators being coupled to modulate its respective base optical beam so as to generate respective multiple carrier beams at side-bands of the respective base wavelength and to introduce information into the carrier beams for transmission thereby to a receiver.
- 15. A method for optical communications, comprising:
generating a base optical beam at a base wavelength; modulating the base optical beam so as to generate multiple carrier beams at respective side-bands of the base wavelength; modulating the carrier beams with respective information signals; and transmitting the modulated carrier beams to a receiver.
- 16. A method according to claim 15, wherein generating the base optical beam comprises generating the beam from a single laser source.
- 17. A method according to claim 15, generating the base optical beam comprises generating the beam from a broadband source and a filter which filters an output of the broadband source to generate the base wavelength.
- 18. A method according to claim 15, wherein modulating the base optical beam comprises modulating the beam by at least one modulation method chosen from a group of modulation methods comprising amplitude modulation, frequency modulation, and phase modulation.
- 19. A method according to claim 15, wherein modulating the base optical beam comprises dividing the multiple carrier beams into respective separate sub-beams.
- 20. A method according to claim 15, wherein modulating the carrier beams comprises performing the modulation by at least one modulation method chosen from a group of modulation methods comprising amplitude modulation, frequency modulation, phase modulation, and polarization modulation.
- 21. A method according to claim 15, wherein modulating the base optical beam comprises modulating the beam with one or more radio-frequency (RF) signals.
- 22. A method according to claim 21, wherein modulating the beam with one or more radio-frequency (RF) signals comprises adjusting respective levels of the one or more RF signals so that levels of the multiple carrier beams are substantially equal one to another.
- 23. A method according to claim 15, and comprising providing one or more components which separate the multiple carrier beams into respective sub-beams, the one or more components comprising at least one of an optical splitter and a filter.
- 24. A method according to claim 23, wherein modulating the base optical beam comprises modulating each of the sub-beams by at least one modulation method chosen from a group of modulation methods comprising amplitude modulation, frequency modulation, and phase modulation.
- 25. A method according to claim 15, and comprising combining each of the modulated carrier beams into an output beam.
- 26. A method according to claim 15, and comprising introducing a reference signal into at least one of the carrier beams, the reference signal conveying at least one of a frequency of the base optical beam and a frequency of the multiple carrier beams.
- 27. A method according to claim 15, and comprising:
separating each of the carriers at the receiver; and demodulating each of the carriers so as to recover the respective information signals.
- 28. A method for generating a plurality of optical data carriers, comprising:
generating an optical beam having a base wavelength in a radiation source; modulating the beam with at least one modulation frequency so as to generate a plurality of side-bands of the base wavelength; and filtering the modulated beam so as to isolate each of the plurality of side-bands for use as an optical data carrier.
- 29. Apparatus for generating optical data carriers, comprising:
a radiation source which is adapted to generate an optical beam having a base wavelength; an optical modulator which is adapted to modulate the beam so as to generate side-bands of the base wavelength; and an optical filter which is adapted to isolate each of the side-bands for use as an optical data carrier.
- 30. Apparatus according to claim 29, wherein the radiation source comprises at least one source chosen from a group comprising a laser and a filtered broadband source.
- 31. Apparatus according to claim 29, wherein the optical modulator is coupled to perform the modulation by at least one method chosen from a group comprising amplitude modulation, phase modulation, and frequency modulation.
- 32. A method for generating a plurality of optical data carriers, comprising:
generating an optical beam having a base wavelength; dividing the beam into a plurality of sub-beams at the base wavelength; and modulating each of the sub-beams with a different, respective modulation frequency so as to generate one or more side-bands from each of the sub-beams.
- 33. Apparatus for generating optical data carriers, comprising:
a radiation source which is adapted to generate an optical beam having a base wavelength; a splitter which is adapted to divide the beam into a plurality of sub-beams; and a plurality of optical modulators each of which is adapted to receive a respective sub-beam and to modulate the sub-beam so as to generate one or more side-bands of the base wavelength.
- 34. A data receiver, comprising:
an input port which is adapted to receive a plurality of optical data carriers and a reference, the carriers having been generated by modulation of an optical beam having a base wavelength, each of the carriers being modulated by respective data, the reference characterizing at least one of a frequency of the base wavelength and the frequency of the modulation; one or more filters which are adapted to separate each of the carriers responsive to the reference; and a plurality of detectors each of which demodulates a respective carrier so as to recover the respective data present in the carrier.
- 35. An optical transmitter, comprising:
a radiation source, which is adapted to generate a base optical beam with a plurality of base wavelengths; and at least one modulator, which is coupled to modulate the base optical beam so as to generate multiple carrier beams at respective side-bands of the plurality of base wavelengths and to introduce information into the carrier beams for transmission thereby to a receiver.
- 36. An optical transmitter according to claim 35, wherein the radiation source comprises:
a plurality of sources each of which is adapted to generate a different one of the plurality of base wavelengths; and a multiplexer which combines the plurality of base wavelengths into the base optical beam.
- 37. A method for optical communications, comprising:
generating a base optical beam with a plurality of base wavelengths; modulating the base optical beam so as to generate multiple carrier beams at respective side-bands of the plurality of base wavelengths; modulating the carrier beams with respective information signals; and transmitting the modulated carrier beams to a receiver.
- 38. A method according to claim 37, wherein generating the base optical beam comprises:
generating each of the plurality of base wavelengths with a respective source; and combining the plurality of base wavelengths.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Patent Applications, 60/292,339 filed 22 May 2001, 60/330,819 filed 31 Oct. 2001, and 60/363,591 filed Mar. 11 2002, which are assigned to the assignee of the present invention and which are incorporated herein by reference.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60292339 |
May 2001 |
US |
|
60330819 |
Oct 2001 |
US |
|
60363591 |
Mar 2002 |
US |