Claims
- 1. An imaging system including:
an illumination source for producing an illumination field; a diffractive modulator for receiving the illumination field and producing a modulated illumination field; imaging optics for directing said modulated illumination field toward an imaging surface; and reduction means for reducing coherence and spatial cross-talk effects in said modulated illumination field.
- 2. The imaging system as claimed in claim 1, wherein said reduction means includes a Fourier transformation unit.
- 3. The imaging system as claimed in claim 2, wherein said system further includes a normalization unit.
- 4. The imaging system as claimed in claim 1, wherein said reduction means includes supplemental modulation means for directing the modulator to provide a supplemental modulation in addition to an alternating modulation pattern.
- 5. The imaging system as claimed in claim 4, wherein said supplemental modulation means includes a controller that is coupled to the modulator.
- 6. The imaging system as claimed in claim 1, wherein said reduction means includes spacer means for modifying the distance between adjacent pixel-forming portions of the modulator.
- 7. The imaging system as claimed in claim 6, wherein said spacer means includes a controller that is coupled to the modulator.
- 8. The imaging system as claimed in claim 1, wherein said reduction means includes diffractive elements means for modifying the number of diffractive elements of a pixel-forming portion of the modulator.
- 9. The imaging system as claimed in claim 6, wherein said diffractive elements means includes a controller that is coupled to the modulator.
- 10. An imaging system including:
an illumination source including a gas discharge lamp for producing an illumination field; coherence reduction means for reducing the spatial coherence of the illumination field and producing an at least partially incoherent illumination field; a diffractive modulator for receiving the at least partially coherent illumination field and producing a modulated at least partially coherent illumination field; and imaging optics for directing said modulated at least partially coherent illumination field toward an imaging surface.
- 11. The imaging system as claimed in claim 10, wherein said coherence reduction means reduces the spatial coherence of said illumination field.
- 12. The imaging system as claimed in claim 10, wherein said at least partially incoherent illumination field is at least partially coherent.
- 13. The imaging system as claimed in claim 10, wherein said diffractive modulator is a grating light valve.
- 14. A method of imaging including the steps of:
producing an illumination field; receiving the illumination field at a light modulator; producing a modulated illumination field; and directing said modulated illumination field toward an imaging surface for imaging wherein spatial cross-talk effects in said modulated illumination field are reduced.
- 15. The method as claimed in claim 14, wherein said at least partially non-coherent illumination field is partially non-coherent.
- 16. The method as claimed in claim 14, wherein said at least partially non-coherent illumination field is non-coherent.
- 17. The method as claimed in claim 14, wherein said method further includes the step of adjusting a grating period of a light modulator.
- 18. The method as claimed in claim 14, wherein said method further includes the step of applying a mathematical-electronic correction.
- 19. The method as claimed in claim 14, wherein said method further includes the step of performing a Fourier transformation of the illumination field.
Parent Case Info
[0001] This application claims priority to U.S. Provisional Patent Application Ser. No. 60/394,123 filed Jul. 3, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60394123 |
Jul 2002 |
US |