Claims
- 1. An optical element comprising in order a light source, air, at least one thin layer having a thickness of 80 to 200 nm, and a thick layer, each layer varying in refractive index (RI) by at least 0.05 from the next adjacent layer, in an alternating manner.
- 2. The optical element of claim 1 wherein said adjacent layers vary from each other in RI by at least 0.10.
- 3. The optical element of claim 1 wherein said optical element comprises from 3 to 8 layers.
- 4. The optical element of claim 1 wherein said optical element comprises from 3 to 30 layers.
- 5. The optical element of claim 1 wherein said thick layer has a thickness from grater than 200 to 1000 nanometers.
- 6. The optical element of claim 1 wherein said thick layer has a thickness from 1000 to 5000 nanometers.
- 7. The optical element of claim 1 wherein said optical element provides colored light.
- 8. The optical element of claim 7 where said colored light comprises a half-bandwidth from 10 to 70 nm.
- 9. The optical element of claim 1 wherein said optical element provides a chromatic transmission peak at 570 to 620 nm.
- 10. The optical element of claim 1 wherein said optical element provides a chromatic transmission peak at 630 to 690 and 425 to 480 nm.
- 11. The optical element of claim 1 wherein said optical element provides a chromatic transmission peak at 480 to 520 nm.
- 12. The optical element of claim 1 wherein said optical element provides a chromatic transmission peak at 630 to 690 nm.
- 13. The optical element of claim 1 wherein said optical element provides a chromatic transmission peak at 525 to 590 nm.
- 14. The optical element of claim 1 wherein said optical element provides a chromatic transmission peak at 425 to 480 nm.
- 15. The optical element of claim 1 wherein the optical element has a thickness from 300 nanometers to 3000 nanometers.
- 16. The optical element of claim 1 wherein said layers comprise polymers.
- 17. The optical element of claim 1 wherein said alternating layers comprise PEN, silicone and polycarbonate.
- 18. The optical element of claim 1 wherein said alternating layers comprise polycarbonate, cellulose acetate and polyester.
- 19. The optical element of claim 1 wherein said optical element is applied to the surface of glass.
- 20. The optical element of claim 1 wherein said optical element is applied to the surface of a light guide.
- 21. The optical element of claim 1 wherein said optical element is applied to the surface of a polymer prism sheet.
- 22. The optical element of claim 1 wherein said optical element is applied to the surface of a reflective surface.
- 23. The optical element of claim 1 wherein said optical element is applied to the surface of a transflective surface.
- 24. The optical element of claim 1 wherein said optical element is applied to the surface of a light bulb.
- 25. The optical element of claim 1 wherein said optical element is applied to the surface of a transparent polymer sheet.
- 26. The optical element of claim 1 wherein said optical element is applied to the surface of a polarization film.
- 27. The optical element of claim 1 wherein said optical element is applied to the surface of low birefingent cellulose acetate.
- 28. The optical element of claim 1 wherein said optical element further comprises a light diffuser.
- 29. The light diffuser of claim 28 wherein said light diffuser has a % transmission greater than 90%.
- 30. The light diffuser of claim 28 wherein said light diffuser has a haze greater than 85%.
- 31. The light diffuser of claim 28 wherein said light diffuser comprises a microvoided polymer.
- 32. The light diffuser of claim 28 further comprising a transparent polymeric film having a top and bottom surface comprising a plurality of complex lenses on at least one surface thereof.
- 33. The light diffuser of claim 28 further comprising complex lenses which are randomly distributed on the surface.
- 34. A method for forming an optical element comprising in order a light source, air, at least one thin layer having a thickness of 80 to 200 nm, and a thick layer, each layer varying in refractive index (RI) by at least 0.05 from the next adjacent layer in an alternating manner, consisting of simultaneously coating of alternating layers onto a transparent polymer sheet.
- 35. A back lighted device comprising a light source and an optical element comprising in order a light source, air, at least one thin layer having a thickness of 80 to 200 nm, and a thick layer, each layer varying in refractive index (RI) by at least 0.05 from the next adjacent layer in an alternating manner and having a diffuse light transmission of at least 75%.
- 36. A liquid crystal device comprising a light source and an optical element comprising in order a light source, air, at least one thin layer having a thickness of 80 to 200 nm, and a thick layer, each layer varying in refractive index (RI) by at least 0.05 from the next adjacent layer in an alternating manner and having a diffuse light transmission of at least 75% wherein the transparent polymeric film is located between the light source and a polarizing film.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to copending application Ser. No. 10/095,204 filed Mar. 11, 2002.