Claims
- 1. A deformable grating light valve, comprising:at least three beams, one beam of said at least three beams being of a substantially fixed-position, and at least two beams of said at least three beams being deformable by electrostatic force in a substantially staircase structure, each step of said staircase creating a predefined change in the phase of an impinging light beam; a first electrode and a second electrode, said first and second electrodes transmitting electrostatic force to at least two of said deformable beams of said at least three beams; and wherein said deformable beams form said first electrode and said second electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said deformable beams.
- 2. A Spatial light modulator comprising an array of light valves of claim 1.
- 3. A deformable grating light valve, comprising:at least three beams, one beam of said at least three beams being of a substantially fixed-position, and at least two beams of said at least three beams being deformable by electrostatic force in a substantially staircase structure, each step of said staircase creating a predefined change in the phase of an impinging light beam; a first electrode and a second electrode, said first and second electrodes transmitting electrostatic force to at least two of said deformable beams of said at least three beams; and wherein said beam of a substantially fixed-position is deformable by electrostatic force.
- 4. The light valve of claim 3, wherein said at least three beams form said first electrode and said second electrode is common to all said deformable beams.
- 5. A Spatial light modulator formed as an array of light valves of claim 4.
- 6. The light valve of claim 3, wherein said at least three beams form said first electrode and said second electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beams.
- 7. A Spatial light modulator formed as an array of light valves of claim 6.
- 8. The light valve of claim 3, wherein said first electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beams, and said second electrode is common to all said at least three beams.
- 9. A Spatial light modulator formed as an array of light valves of claim 8.
- 10. A Spatial light modulator formed as an array of light valves of claim 3.
- 11. A deformable grating light valve, comprising:at least three beams, one beam of said at least three beams being of a substantially fixed-position, and said at least three beams being deformable by electrostatic force in a substantially staircase structure, each step of said staircase creating a predefined change in the phase of an impinging light beam; a first electrode and a second electrode, said first and second electrodes transmitting electrostatic force to at least two of said deformable beams of said at least three beams; and wherein said at least three beams form said first electrode and said second electrode is common to all said deformable beams.
- 12. The light valve of claim 11, wherein said at least three beams form said first electrode and said second electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beams.
- 13. A Spatial light modulator formed as an array of light valves of claim 12.
- 14. The light valve of claim 11, wherein said first electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beams, and said second electrode is common to all said at least three beams.
- 15. A Spatial light modulator formed as an array of light valves of claim 14.
- 16. A Spatial light modulator formed as an array of light valves of claim 11.
- 17. A method for light modulation, comprising the steps of:providing a deformable grating light valve, said light valve comprising at least three beams, at least the first beam of said at least three beams being of a substantially fixed-position, and at least two beams of said at least three beams being deformable by electrostatic force in a substantially staircase structure, each step of said staircase creating a predefined change in the phase of an impinging light beam; wherein said deformable grating light valve additionally comprises a first electrode and a second electrode, said first and second electrodes transmitting electrostatic force to at least two of said deformable beams of said at least three beams; illuminating said light valve; applying voltage between said first electrode and said second electrode; and wherein said deformable beams form said first electrode, and said second electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said deformable beams.
- 18. A method according to claim 17, wherein said beam of a substantially fixed-position is deformable by electrostatic force.
- 19. A method according to claim 18, wherein all said at least three beams form said first electrode and wherein said second electrode is common to all said at least three beams.
- 20. A method according to claim 18, wherein said at least three beams form said first electrode and said second electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beam.
- 21. A method according to claim 18, wherein said first electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beams, and said second electrode is common to all said at least three beams.
- 22. A method for light modulation, comprising the steps of: providing a deformable grating light valve, said light valve comprising at least three beams, at least the first beam of said at least three beams being of substantially fixed-position, and at least two beams of said at least three beams being deformable by electrostatic force in a substantially staircase structure, each step of said staircase creating a predefined change in the phase of an impinging light beam, wherein said deformable grating light valve additionally comprises a first electrode and a second electrode, said first and second electrodes transmitting electrostatic force to at least two of said deformable beams of said at least three beams;illuminating said light valve; applying voltage between said first electrode and said second electrode; and wherein said first electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said deformable beams, and said second electrode is common to all said deformable beams.
- 23. A method according to claim 22, wherein said beam of a substantially fixed-position is deformable by electrostatic force.
- 24. A method according to claim 22, wherein all said at least three beams form said first electrode and wherein said second electrode is common to all said at least three beams.
- 25. A method according to claim 22, wherein said at least three beams form said first electrode, and said second electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beams.
- 26. A method according to claim 22, wherein said first electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beams, and said second electrode is common to all said at least three beams.
- 27. A method for light modulation, comprising the steps of:providing a deformable grating light valve, said light valve comprising at least three beams, at least the first beam of said at least three beams being of a substantially fixed-position, and said at least three beams being deformable by electrostatic force in a substantially staircase structure, each step of said staircase creating a predefined change in the phase of an impinging light beam wherein said deformable grating light valve additionally comprises a first electrode and a second electrode, said first and second electrodes transmitting electrostatic force to at least two of said deformable beams of said at least three beams; illuminating said light valve; and applying voltage between said first electrode and said second electrode.
- 28. A method according to claim 27, wherein all said at least three beams form said first electrode and wherein said second electrode is common to all said at least three beams.
- 29. A method according to claim 27, wherein said at least three beams form said first electrode and said second electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beam.
- 30. A method according to claim 27, wherein said first electrode comprises an array of electrodes, each electrode of said array of electrodes associated with one of said at least three beams, and said second electrode is common to all said at least three beams.
CROSS REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of U.S. provisional application Ser. No. 60/218,063 filed Jul. 13, 2000.
US Referenced Citations (15)
Non-Patent Literature Citations (2)
Entry |
B. Courtois et al., “Design, Test and Microfabrication of MEMS and MOEMS”, SPIE proceedings 3680, 1999, ISBN 0-8194-3154-0, (cover page and table of contents). |
M. Born and E. Wolf, “Principles of Optics”, Pergamon, New York, 1975, pp. 401-405. |
Provisional Applications (1)
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Number |
Date |
Country |
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60/218063 |
Jul 2000 |
US |