Claims
- 1. A apparatus for coupling an illumination light to a digital micro-mirror device (DMD) and for preserving a wavefront property of a useful illumination light, wherein said DMD has a plurality of micro-mirrors, and each micro-mirror is adjustable between a first position and a second position, and said useful illumination light is a reflection of said illumination light by at least one of said micro-mirrors in said first position, comprising:
- a) a first prism comprising a first side surface, a second side surface and a third surface;
- b) a second prism comprising a fourth side surface, a fifth side surface and a sixth side surface, wherein said fourth side surface is substantially adjacent to said second side surface;
- c) an angularly selective film, positioned between said second side surface and said fourth side surface, having a predetermined thickness and a profile index of refraction;
- wherein:
- said illumination light enters said first side surface, is reflected by said angularly selective film at said second surface at a first angle, exits said third side surface, is incident on said micro-mirrors, and
- said useful illumination light enters said third side surface at a substantially normal angle, passes said first prism, exits said second side surface, passes said angularly selective film at a second angle, enters said fourth side surface, passes said fifth side surface at a substantially normal angle.
- 2. The apparatus of claim 1 wherein said angularly selective film is substantially thin.
- 3. The apparatus of claim 1 wherein said refractive index profile of said angularly selective film is substantially close to a refractive index of said first prism.
- 4. The apparatus of claim 1 wherein said angularly selective film includes different portions for different wavelengths.
- 5. The apparatus of claim 1 wherein said angularly selective thin film is coated on said second side surface.
- 6. The apparatus of claim 1 wherein said angularly selective film is coated on said second side surface, and selectively reflects an incident light at said first angle.
- 7. The apparatus of claim 6 wherein said coated second side surface is attached to said fourth side surface by a cement.
- 8. The apparatus of claim 1 wherein said angularly selective film is coated on said fourth side surface, and selectively reflects an incident light at said first angle.
- 9. The apparatus of claim 8 wherein said coated fourth side surface is attached to said second side surface by a cement.
- 10. The apparatus of claim 1 wherein said first prism and said second prism are composed of a material of the same type.
- 11. The apparatus of claim 1 wherein said first prism and said second prism are right angle prisms, and said second side surface and said fifth side surface are hypotenuse surfaces, and said third and fifth side surfaces are parallel.
- 12. The apparatus of claim 11 further comprising a third right angle prism having a seventh side surface, a eighth side surface and a ninth side surface, wherein said ninth side surface is a hypotenuse side surface, said eighth side surface is attached to said first side surface.
- 13. The apparatus of claim 12 wherein said first prism and said second prism are attached by a light curable cement.
- 14. The apparatus of claim 13 wherein:
- a) said third prism is a 45-45-90-degree prism;
- b) said first prism is a 30-60-90-degree prism, said first side surface is a short side surface, and said ninth side surface and said first side surface form an angle of 15 degrees;
- c) said second prism is a 30-60-90-degree prism, said fifth surface is a long side surface;
- d) said illumination light is parallel to said seventh side surface, and is incident on said ninth side surface, passes said third and first prisms, reflected by said angularly selective film, exits said third side surface at an angle of approximately 20 degrees.
- 15. The apparatus of claim 14 wherein said first, second and third prisms are composed of a material of the same type.
- 16. The apparatus of claim 14 wherein said first prism and said second prism are composed of a material of the same type, and said third prism is composed of a material of a different type.
- 17. The apparatus of claim 14 wherein said ninth side surface and said third side surface are covered with anti-reflection coating.
- 18. The apparatus of claim 1 wherein said first prism is a 45-150-30-135 degree prism, a side surface between the 45 and 135 degree corners of said 45-150-30-135 degree prism is said first side surface, a side surface between the 150 and 30 degree corners of said 45-150-30-135 degree prism is said second side surface, and a side surface between the 30 and 135 degree corners of said 45-150-30-135 degree prism is said third side surface.
- 19. The apparatus of claim 18 wherein said second prism is a 30-60-90 degree prism, a hypotenuse side surface of said 30-60-90 degree prism is said fourth side surface, a short side surface of said 30-60-90 degree prism is perpendicular to a side surface between the 45 and 150 degree corners of said first prism.
- 20. A method for coupling an illumination light to a digital micro-mirror device (DMD) and for preserving a wavefront property of a useful illumination light, wherein said DMD has a plurality of micro-mirrors, and each micro-mirror is adjustable between a first position, a second position and a relaxed position, and said useful illumination light is a reflection of said illumination light by at least one of said micro-mirrors in said first position, comprising:
- a) providing a first prism comprising a first side surface, a second side surface and a third surface;
- b) providing a second prism comprising a fourth side surface, a fifth side surface and a sixth side surface, wherein said fourth side surface is substantially adjacent to said second side surface;
- c) providing an angularly selective film, positioned between said second side surface and said fourth side surface, having a predetermined thickness and index of refraction;
- wherein:
- said illumination light enters said first side surface, is reflected by said angularly selective film at said second surface at a first angle, exits said third side surface, is incident on said micro-mirrors, and
- said useful illumination light enters said third side surface at a substantially normal angle, passes said first prism, exits said second side surface, passes said angularly selective film at a second angle, enters said fourth side surface, passes said fifth side surface at a substantially normal angle.
- 21. The method of claim 20 further comprising a step of eliminating air gap between said second side surface and said fourth side surface.
- 22. A apparatus for encoding a signal beam in a holographic imaging system, comprising:
- a) a digital micro-mirror device (DMD) having a plurality of micro-mirrors, and each micro-mirror is adjustable between a first position, a second position and a relaxed position,
- b) a light coupler comprising:
- a first prism comprising a first side surface, a second side surface and a third surface;
- a second prism comprising a fourth side surface, a fifth side surface and a sixth side surface, wherein said fourth side surface is substantially adjacent to said second side surface;
- an angularly selective film, positioned between said second side surface and said fourth side surface, having a predetermined thickness and index of refraction;
- wherein:
- an encoded signal beam is a reflection of said signal beam by at least one of said micro mirrors in said first position;
- said signal beam enters said first side surface, is reflected by said angularly selective film at said second surface at a first angle, exits said third side surface, is incident on said micro-mirrors, and
- said encoded signal beam enters said third side surface at a substantially normal angle, passes said first prism, exits said second side surface, passes said angularly selective film at a second angle, enters said fourth side surface, passes said fifth side surface at a substantially normal angle.
GOVERNMENT RIGHTS CLAUSE
This invention was made with Government support under SBIR grant No. NAS5-33257. The Government has certain rights in this invention.
US Referenced Citations (5)