Claims
- 1. An optical system for processing optical input signals to produce optical output signals comprising
a spatial light modulator coupled to the each of the optical input signals for encoding the corresponding one of the input optical signals, a combiner for generating a linear combination of the optical signals emitted by each modulator, a matched filter composed of a single hologram for receiving the linear combination, and a two-dimensional microlens arrangement coupled to the matched filter wherein each of the optical output signals is obtained from a corresponding microlens in the arrangement.
- 2. The system as recited in claim 1 wherein the encoding utilizes a circularly shifted code and the single hologram is based upon the circularly shifted code.
- 3. The system as recited in claim 1 wherein the optical matched filter includes the cascade of: a Fourier Transform lens for transforming the linear combination; the hologram positioned at the output of the Fourier Transform lens; and a focusing lens for receiving the output of the hologram.
- 4. The system as recited in claim 1 wherein the hologram is generated with reference to one of the code words.
- 5. The system as recited in claim 4 wherein the path of the optical signal emitted from the hologram for each of the code words in the linear combination is horizontally and vertically offset in correspondence to said each of the code words.
- 6. The system as recited in claim 1 wherein the microlens arrangement is configured with a curvature to maximize the energy in the optical output signals.
- 7. An optical system for switching optical input signals to obtain switched optical output signals comprising
a spatial light modulator coupled to the each of the optical input signals for encoding the corresponding one of the input optical signals, the encoding being based upon a circularly shifted code set composed of code words, a controller, coupled to each light modulator, for assigning a unique one of the code words to each light modulator, a combiner for generating a linear combination of the optical signals transmitted by each modulator, a matched filter composed of a single hologram based upon the code set for receiving the linear combination, and a two-dimensional microlens arrangement coupled to the matched filter wherein each of the output optical signals is obtained from a corresponding microlens in the arrangement.
- 8. The system as recited in claim 7 wherein the optical matched filter includes the cascade of: a Fourier Transform lens for transforming the linear combination; the hologram positioned at the output of the Fourier Transform lens; and a focusing lens at the output of the hologram.
- 9. The system as recited in claim 7 wherein the hologram is generated with reference to one of the code words.
- 10. The system as recited in claim 9 wherein the path of the optical signal emitted from the hologram for each of the code words in the linear combination is horizontally and vertically offset in correspondence to said each of the code words.
- 11. The system as recited in claim 7 wherein the microlens arrangement is configured with a curvature to maximize the energy in the optical output signals.
- 12. An all-optical receiver for processing a linear combination of optical input signals obtained by modulating each of the input optical signals with a code word from a given circularly shifted code set to produce a corresponding set of optical output signals, the receiver comprising
a matched filter composed of a single hologram based upon the code set for receiving the linear combination, and a two-dimensional microlens arrangement coupled to the matched filter wherein each of the optical output signals is obtained from a corresponding microlens in the arrangement.
- 13. The receiver as recited in claim 12 wherein the optical matched filter includes the cascade of: a Fourier Transform lens for transforming the linear combination; the hologram positioned at the output of the Fourier Transform lens; and a focusing lens at the output of the hologram.
- 14. The system as recited in claim 12 wherein the microlens arrangement is configured with a curvature to maximize the energy in the optical output signals.
- 15. A method for processing optical input signals to produce optical output signals comprising
encoding each of the optical input signals with a spatial light modulator to produce encoded output signals, generating a linear combination of the encoded optical signals, filtering the linear combination with a matched filter composed of a single hologram, and detecting the filtered signal with a two-dimensional microlens arrangement coupled to the matched filter wherein each of the optical output signals is obtained from a corresponding microlens in the arrangement.
- 16. The method as recited in claim 15 wherein the encoding is based upon a circularly shifted code set composed of code words.
- 17. The method as recited in claim 16 wherein the encoding includes modulating each of the optical input signals with a spatial light modulator based upon a unique one of the code words.
- 18. The method as recited in claim 15 further including configuring the microlens arrangement with a curvature to maximize the energy in the optical output signals.
- 19. A method for processing a linear combination of received optical input signals obtained by modulating each of the input optical signals with a code word from a given circularly shifted code set to produce a corresponding set of optical output signals, the receiver method comprising
filtering the linear combination with a matched filter composed of a single hologram, and detecting the filtered signal with a two-dimensional microlens arrangement coupled to the matched filter wherein each of the optical output signals is obtained from a corresponding microlens in the arrangement.
- 20. The method as recited in claim 19 further including configuring the microlens arrangement with a curvature to maximize the energy in the optical output signals.
- 21. An optical method for switching optical input signals to obtain switched optical output signals comprising
interposing a spatial light modulator into the path of each of the optical input signals, assigning, via a switching controller, a unique one of the code words to each light modulator to encode each corresponding one of the optical input signals, the encoding being based upon a circularly shifted code set composed of code words generating a linear combination of the optical signals transmitted by each modulator, filtering the linear combination with a matched filter composed of a single hologram based upon the code set, and detecting the filtered signal with a two-dimensional microlens arrangement coupled to the matched filter wherein each of the switched optical output signals is obtained from a corresponding microlens in the arrangement.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a non-provisional application of provisional application Serial No. 60/348,279 filed Jan. 15, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60348279 |
Jan 2002 |
US |