Claims
- 1. A light control material for displaying a color, said material comprising:
a material body including
a plurality of microstructures, wherein the plurality produces a multicolor two-dimensional image when illuminated.
- 2. The light control material of claim 1, wherein each of said microstructures comprise a plurality of concentric steps, each step having a step height equal to about one half of a wavelength of light-forming the image.
- 3. The light control material of claim 2, wherein the microstructures comprise substantially equal step heights, and wherein each stepped structure reflects a wavelength of phase coherent wavelength-of light-equal to twice the step height of the steps.
- 4. The light control material of claim 3, wherein each of said microstructures has a substantially parabolic vertical cross-sectional profile.
- 5. The light control material of claim 3, wherein each of said concentric steps has approximately the same surface area.
- 6. The light control material of claim 3, wherein a plurality of said steps are curved to widen the effective viewing area at which said reflected light can be observed.
- 7. The light control material of claim 2, wherein each stepped structure reflects a selected central color having a wavelength correlated to twice the average height of said steps and having a bandwidth correlated to the number of said steps.
- 8. The light control material of claim 1, wherein said microstructures are produced by a method including the step of applying an interference pattern onto a photosensitive material.
- 9. A light control material of claim 1, wherein said microstructures are embossed into the material body in a single embossment.
- 10. The light control material of claim 1, wherein at least two of said microstructures reflect substantially different wavelengths of visible spectrum light.
- 11. The light control material of claim 2, wherein a first one of said microstructures is comparised of steps having one step height and a second one of said microstructures is comprised of steps having a differing step height than those of the first one of said microstructures.
- 12. The light control material of claim 2, wherein at least two microstructures have steps of differing heights.
- 13. The light control material of claim 10, wherein said microstructures produce an additive image of a secondary color by constructive interference.
- 14. The light control material of claim 1, wherein said material body includes a glass substrate and said microstructures include a cured photopolymer.
- 15. The light control material of claim 1, wherein said material body and said microstructures are composed of quartz.
- 16. The light control material of claim 1, wherein said microstructures include a thermoplastic material.
- 17. The light control material of claim 1, wherein said material body and said microstructures are overcoated with a thin layer of metal and wherein said layer of metal is overcoated with a layer of transparent material.
- 18. The light control material of claim 1, further comprising an overlay material disposed adjacent over said material body having said microstuctures, said overlay material having a particular refractive index, wherein the periodicity of said microstructures is selected to correspond to a desired wavelength of light in a medium having the refractive index of the overlay material.
- 19. The light control material of claim 1, including a plurality of linear arrays of said microstructures, wherein each linear array of microstructures has a periodicity corresponding to a particular wavelength.
- 20. The light control material of claim 1, wherein said microstructures are embedded in a surface of said material body.
- 21. The light control material of claim 1, wherein said microstructures comprise a plurality of ribbed structures spaced apart at a distance of about ½ of the wavelength of light derived to be reflected from the material.
- 22. The light control material of claim 1, wherein said microstructures comprise a plurality of lattice inclusions having a refractive index on the order of 1, and wherein said material body is comprised of a material having refractive index in the range of about 1.4 to about 1.65 or vice versa.
- 23. A method for creating a light control material comprising the steps of:
providing a material body; producing a plurality of microstructures therein or thereon having a periodicity to reflect a particular bandwidth of light to form a multicolored image.
- 24. A method for displaying a color image comprising the steps of:
forming a plurality of periodic structures in or on a material body, each structure comprised of a plurality of steps, each step having a step height equal to substantially one half of a wavelength of visible spectrum light wherein all of the steps comprising any one of said stepped structures have substantially equal step heights, wherein each stepped structure reflects one wavelength of phase coherent visible spectrum light, wherein the wavelength of phase coherent visible spectrum light reflected by any one of said stepped structures is equal to substantially twice the step height of the steps of the stepped structure, whereby said material displays a multicolor image.
- 25. A method for displaying a color image according to claim 23, wherein at least one of said stepped structures reflects a wavelength of phase coherent visible spectrum light that is different from the wavelength of phase coherent visible spectrum light reflected by another one of said stepped structures.
- 26. The device of claim 25, wherein the substrate is substantially planar.
- 27. The device of claim 25, wherein the substrate provides a surface which is substantially round in cross-section.
- 28. A method for producing an image on a substrate, said method comprising the steps of:
providing a substrate having a plurality of structural color microstructures disposed thereon or thereupon; selectively ablating a subset of said plurality of microstructures to create a multicolor image on said substrate.
- 29. The method of claim 28, wherein said plurality of microstructures includes differing microstructures that preferentially reflect differing wavelengths of light.
- 30. The method of claim 29, wherein said plurality of microstructures initially act together via additive color addition to provide an apparent reflection of white light.
- 31. The method of claim 29, wherein said differing microstructures are arranged in linear arrays of like microstructures.
- 32. The method of claim 28, wherein said ablation step is a laser ablation step.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to and the benefit of U.S. Provisional Patent Application 60/352,000 filed on Jan. 24, 2002, and U.S. provisional application 60/351,853 also filed on Jan. 24, 2002, both of which are incorporated herein by reference in their entirety.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60352000 |
Jan 2002 |
US |
|
60351853 |
Jan 2002 |
US |