Claims
- 1. A fourier plane image amplifier, comprising
- a laser for producing a first beam of light;
- a beamsplitter for splitting said first beam into a second beam and a third beam;
- means for generating a Stokes seed in said second beam to form a Stokes seed beam;
- a mask for forming a pattern in said Stokes seed beam to form a mask beam;
- a stimulated Brillouin scattering (SBS) cell having an entrance aperture and an entrance/exit aperture;
- a first focussing lens for focussing said mask beam into said SBS cell through said entrance aperture; and
- a second focussing lens for focussing said third beam into said SBS cell through said entrance/exit aperture, wherein an image beam is produced by said SBS cell, said image beam exiting from said entrance/exit aperture.
- 2. The fourier plane image amplifier of claim 1, further comprising a telescope located in said third beam for maximizing the overlap of said third beam with said mask beam within said SBS cell.
- 3. The fourier plane image amplifier of claim 1, wherein said laser comprises a solid state laser.
- 4. The fourier plane image amplifier of claim 3, wherein said solid state laser is selected from a group consisting of an Nd:YAG laser and an Nd:YLF laser.
- 5. The fourier plane image amplifier of claim 1, further comprising at least one non-linear crystal for frequency shifting said first beam of light.
- 6. The fourier plane image amplifier of claim 1, further comprising at least one non-linear crystal for frequency multiplying said first beam of light.
- 7. The fourier plane image amplifier of claim 1, wherein said generating means comprises a Stokes shift generator.
- 8. The fourier plane image amplifier of claim 7, wherein said Stokes shift generator comprises an oscillator cell.
- 9. The fourier plane image amplifier of claim 7, wherein said Stokes shift generator comprises a frequency shifter.
- 10. The fourier plane image amplifier of claim 9, wherein said frequency shifter comprises an electro-optic crystal.
- 11. The fourier plane image amplifier of claim 1, wherein said mask comprises chrome.
- 12. The fourier plane image amplifier of claim 1, wherein said mask comprises opaque material.
- 13. The fourier plane image amplifier of claim 1, wherein said solid state laser comprises a solid state laser diode optical pumping system.
- 14. The fourier plane image amplifier of claim 1, wherein said solid state laser comprises a flashlamp pumping system.
- 15. The fourier plane image amplifier of claim 1, wherein said telescope comprises two positive lenses.
- 16. A method of using a fourier plane image amplifier, comprising:
- producing a first beam of light;
- splitting said first beam of light into a second beam and a third beam;
- generating a Stokes seed in said second beam to form a Stokes seed beam;
- forming a pattern with a mask in said Stokes seed beam to form a mask beam;
- focussing said mask beam into a stimulated Brillouin scattering (SBS) cell;
- focussing said third beam into said SBS cell in a counter direction of said mask beam;
- maximizing, with a telescope, the overlap of said third beam with said mask beam within said SBS cell; and
- producing an image beam from said SBS cell.
- 17. The method of claim 16, wherein the step of producing a first beam of light includes producing said first beam of light with a solid state laser.
- 18. The method of claim 16, further comprising the step of frequency shifting said first beam of light.
- 19. The method of claim 16, further comprising the step of frequency multiplying said first beam of light.
- 20. The method of claim 16, wherein the step of producing a first beam of light by a laser includes optically pumping said laser with a pumping system selected from a group consisting of a laser diode pumping system and a flashlamp pumping system.
Government Interests
The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the United States Department of Energy and the University of California for the operation of Lawrence Livermore National Laboratory.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
5260954 |
Dane et al. |
Nov 1993 |
|
5394412 |
Huignard et al. |
Feb 1995 |
|