Claims
- 1. An apparatus for time delaying different polarization components of a signal relative to one another, comprising:
a polarization signal splitter which splits first and second polarization components of an input signal into a first component signal and a second component signal such that said first component signal propagates along a first path and the second component signal propagates along a second path, wherein said first component signal reaches a location relative to when said second component reaches said location at times differing by a delayed time.
- 2. The apparatus of claim 1 further comprising a director at said location for directing said first component signal and said second component signal to propagate along a common path from said location.
- 3. The apparatus of claim 1 further comprising a receiver for receiving said first component signal and said second component signal at said location.
- 4. The apparatus of claim 3 wherein said receiver coherently receives said first component signal and said second component signal, thereby generating a coherence signal representative of said input signal.
- 5. The system of claim 4 wherein said input signal is a relatively weak signal and said coherence signal is a relatively strong signal.
- 6. The apparatus of claim 1 wherein said polarization beam splitter comprises a polarizing beam splitter.
- 7. The apparatus of claim 1 wherein said polarizing beam splitter comprises a beam splitter cube.
- 8. The apparatus of claim 1 wherein said polarization beam splitter comprises a magnetic material.
- 9. The system of claim 1 wherein at least part of said first path is in free space.
- 10. The system of claim 1 wherein at least part of said first path is defined by an optical fiber.
- 11. The system of claim 1 wherein a wavelength of said input signal is in the red or infrared spectral region.
- 12. The system of claim 1 further comprising at least one mirror redirecting said first path.
- 13. A system for transmitting information, comprising:
a signal generator which is designed to generate an input signal; a polarization signal splitter which splits first and second polarization components of said input signal into a first component signal and a second component signal such that said first component signal propagates along a first path and the second component signal propagates along a second path, wherein said first component signal reaches a location relative to when said second component reaches said location at times differing by a delayed time; and a receiver for coherently receiving said first component signal and said second component signal, thereby generating a coherence signal representative of said input signal.
- 14. The system of claim 13 wherein said signal generator also generates a timing signal.
- 15. The system of claim 14 wherein said receiver synchronizes its detection of said coherence signal to its time of receipt of said timing signal.
- 16. The system of claim 14 wherein said timing signal is a relatively strong signal and said input signal is a relatively weak signal.
- 17. The system of claim 13 wherein said signal generator encodes information in a polarization state of said input signal.
- 18. A method for time delaying different polarization components of a signal relative to one another, comprising:
splitting first and second polarization components of an input signal into a first component signal and a second component signal such that said first component signal propagates along a first path and the second component signal propagates along a second path, wherein said first component signal reaches a location relative to when said second component reaches said location at times differing by a delayed time.
- 19. The method of claim 18 further comprising directing said first component signal and said second component signal to propagate along a common path from said location.
- 20. The method of claim 18 further comprising receiving said first component signal and said second component signal at said location in a receiver.
- 21. The method of claim 20 further comprising coherently receiving said first component signal and said second component signal in said receiver, thereby generating a coherence signal representative of said input signal.
- 22. The method of claim 21 wherein said input signal is a relatively weak signal and said coherence signal is a relatively strong signal.
- 23. The method of claim 18 wherein said polarization beam splitter comprises a polarizing beam splitter.
- 24. The method of claim 18 wherein said polarizing beam splitter comprises a beam splitter cube.
- 25. The method of claim 18 wherein said polarization beam splitter comprises a magnetic material.
- 26. The method of claim 18 wherein at least part of said first path is in free space.
- 27. The method of claim 18 wherein at least part of said first path is defined by an optical fiber.
- 28. The method of claim 18 wherein a wavelength of said input signal is in the red or infrared spectral region.
- 29. The method of claim 18 further comprising redirecting said first path with a mirror.
- 30. A method for transmitting information, comprising:
generating an input signal; a polarization signal splitter which splits first and second polarization components of said input signal into a first component signal and a second component signal such that said first component signal propagates along a first path and the second component signal propagates along a second path, wherein said first component signal reaches a location relative to when said second component reaches said location at times differing by a delayed time; and a receiver for coherently receiving said first component signal and said second component signal, thereby generating a coherence signal representative of said input signal.
- 31. The method of claim 30 further comprising generating a timing signal.
- 32. The method of claim 30 further comprising synchronizing detection of said coherence signal to time of receipt of said timing signal.
- 33. The method of claim 31 wherein said timing signal is a relatively strong signal and said input signal is a relatively weak signal.
- 34. The method of claim 30 further comprising encoding information in polarization state of said input signal.
- 35. A method for quantum communication comprising converting quantum information contained in the polarization of an electromagnetic signal into quantum information contained in the relative phase difference between time-separated components of an electromagnetic signal.
- 36. An apparatus for converting quantum information contained in the polarization of an electromagnetic signal into quantum information contained in the relative phase difference between time-separated components of an electromagnetic signal, comprising:
a polarization splitter for splitting a quantum signal into components of different polarization; and means providing for recombination of said components after providing a relative time delay to at least one of the components.
- 37. The apparatus of claim 36 further comprising means for changing the phase of electromagnetic field of at least one of said components.
Priority Claims (1)
Number |
Date |
Country |
Kind |
60283017 |
Apr 2001 |
US |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. provisional application serial No. 60/283,017, filed Apr. 11, 2001, the teachings of which are incorporated herein by reference.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US02/08251 |
4/10/2002 |
WO |
|