Claims
- 1. An acousto-optical correlation system comprising:
- a coherent light source;
- optical beam splitting means responsive to said coherent light source for providing first and second light beams along separate first and second paths;
- a first acousto-optical modulation means positioned to receive said first light beam and responsive to a first electrical input signal for transferring the signal modulation of said first electrical input signal into a spatial and temporal optical modulation on a first diffracted light beam which exits from said first acousto-optical modulation means along a third path and which also transmits a first undiffracted light beam;
- a first light means for intercepting said first undiffracted light beam from said first acousto-optical modulation means;
- a first optical imaging means positioned to receive said first diffracted light beam and form an image in an image plane;
- a second acousto-optical modulation means positioned to receive said second light beam and responsive to a second electrical input signal for transferring the signal modulation of said second electrical input signal into a spatial and temporal optical modulation on a second diffracted light beam which exits from said second acousto-optical modulation means along a fourth path and which also transmits a second undiffracted light beam;
- a second light means for intercepting second undiffracted light beam from said second acousto-optical modulation means;
- a second optical imaging means positioned to receive said second diffracted light beam and form an image in said image plane;
- optical beam combining means for combining and redirecting said first and second diffracted light beams traveling along said third and fourth paths, respectively, along fifth and sixth paths toward said image plane and wherein said fifth and sixth paths are positioned at an angle relative to one another and wherein said first and second diffracted light beams are coincident at said image plane thereby producing optical interference fringes on said image plane; and
- photodetecting means disposed in said image plane for providing an output that is directly related to the complex correlation between said first and second electrical input signal as modulated by said optical interference fringes.
- 2. A system as set forth in claim 1 wherein said coherent light source is a laser.
- 3. A system as set forth in claim 1 wherein said optical beam splitting means and said optical beam combining means are cubical beamsplitters.
- 4. A system as set forth in claim 1 wherein said first and second acousto-optical modulation means are Bragg cells.
- 5. A system as set forth in claim 1 wherein said first and second optical imaging means are spherical optical lenses.
- 6. A system as set forth in claim 1 including focusing means disposed in said fifth and sixth paths for focusing said first and second diffracted light beams onto said image plane.
- 7. A system as set forth in claim 6 wherein said focusing means is a cylindrical optical lens.
- 8. A system as set forth in claim 1 wherein said photodetecting means is a linear array of photodetectors with individual outputs.
- 9. A system as set forth in claim 1 comprising electronic means responsive to said photodetecting means for demodulating output from said photodetecting means.
- 10. A system as set forth in claim 9 wherein said electronic means comprises in-phase and quadrature detector and magnitude and phase calculator.
- 11. A signal correlation processing system comprising:
- a coherent radiation source;
- beam splitting means responsive to said coherent radiation source for providing first and second beams along separate first and second paths;
- first modulation means positioned to receive said first beam and responsive to a first electrical input signal for effecting modulation of said first beam in terms of a first electrical input signal and emitting a first diffracted beam modulated in terms of said first electrical input signal and which also emits a first undiffracted beam;
- first blocking means spatially positioned to intercept said first undiffracted beam from said first modulation means;
- first imaging means positioned to receive said first diffracted beam and form an image in an image surface;
- second modulation means positioned to receive said second beam and responsive to a second electrical input signal for effecting modulation of said second beam in terms of a second electrical input signal and emitting a second diffracted beam modulated in terms of said second electrical input signal and which also emits a second undiffracted beam;
- second blocking means spatially positioned to intercept said second undiffracted beam from said second modulation means;
- second imaging means positioned to receive said second diffracted beam and form an image in an image surface;
- beam combining means for combining and redirecting said first and second diffracted beams traveling along said third and fourth paths, respectively, along fifth and sixth paths toward said image surface and wherein said fifth and sixth paths are positioned at an angle relative to one another and wherein said first and second diffracted beams are coincident at said image surface thereby producing interference fringes in said image surface; and
- photodetecting means disposed in said image plane for providing an output that is directly related to the complex correlation between said first and second electrical input signal as modulated by said interference fringes.
- 12. A system as set forth in claim 11 including focusing means disposed in said seventh and eighth paths for focusing said first and second diffracted beams in the image plane.
- 13. A system as set forth in claim 11 wherein said detecting means is a linear array of photodetectors having individual outputs.
- 14. A system as set forth in claim 11 comprising electronic means responsive to said detecting means for providing demodulation of said output from said photodetection means.
- 15. A system as set forth in claim 14 wherein said electronic means comprises in-phase and quadrature detector and amplitude and phase calculator.
- 16. A system as set forth in claim 11 where at least one of said blocking means includes blocking means spatially positioned to receive a said undiffracted beam and not a said diffracted beam.
RIGHTS OF THE GOVERNMENT
The U.S. Government has rights in the described and claimed invention as represented by a Department of the Army Agreement.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4426134 |
Abramovitz et al. |
Jan 1984 |
|
4558925 |
Casseday et al. |
Dec 1985 |
|
4644267 |
Tsui et al. |
Feb 1987 |
|