Claims
- 1. A planar optical structure comprising a first planar optical waveguide and a first planar gradient index lens optically coupled to the planar optical waveguide.
- 2. The planar optical structure of claim 1 wherein the gradient index lens comprises a gradient in index-of-refraction in two dimension.
- 3. The planar optical structure of claim 1 wherein the gradient index lens comprises a gradient in index-of-refraction in one dimension.
- 4. The planar optical structure of claim 3 wherein the gradient is along an axis perpendicular to a plane orienting the structure.
- 5. The planar optical structure of claim 3 wherein the gradient is along an axis parallel to a plane orienting the structure.
- 6. The planar optical structure of claim 1 wherein the gradient comprises a step-wise gradient in index-of-refraction.
- 7. The planar optical structure of claim 1 wherein the gradient comprises a continuous change in index-of-refraction.
- 8. The planar optical structure of claim 1 further comprising a second planar waveguide and wherein the gradient index lens optically connects the first planar waveguide and the second planar waveguide.
- 9. The planar optical structure of claim 8 wherein the first planar waveguide comprises a core and the second planar waveguide comprises a core having a different thickness perpendicular to a plane orienting the structure relative to the thickness of the core of the first planar waveguide.
- 10. The planar optical structure of claim 8 wherein the first planar waveguide comprises a first core and the second planar waveguide comprises a second core having a width different from the width of the first core, wherein the width is along an axis parallel to a plane orienting the structure and approximately perpendicular to a light propagating direction through the first planar waveguide and the second planar waveguide.
- 11. The planar optical structure of claim 8 wherein the first planar waveguide comprises a first core and the second planar waveguide comprises a second core having a thickness and width each different from that of the first core, wherein the thickness is along an axis perpendicular to a plane orienting the structure relative to the thickness of the core of the first planar waveguide and wherein the width is along an axis parallel to a plane orienting the structure and approximately perpendicular to a light propagating direction through the first planar waveguide and the second planar waveguide.
- 12. The planar optical structure of claim 1 wherein the gradient index lens comprises glass.
- 13. The planar optical structure of claim 12 wherein the glass comprises silica glass.
- 14. The planar optical structure of claim 13 wherein the gradient in index-of-refraction corresponds with a gradient in composition of the silica glass.
- 15. The planar optical structure of claim 1 further comprising an optical fiber connector optically connected to the gradient index lens.
- 16. The planar optical structure of claim 15 further comprising an optical fiber connected to the optical fiber connector.
- 17. The planar optical structure of claim 1 further comprising a second gradient index lens in optical communication with the first gradient index lens.
- 18. The planar optical structure of claim 17 wherein the second gradient index lens and the first gradient index lens are connected optically by a second planar waveguide.
- 19. The planar optical structure of claim 17 wherein the second gradient index lens and the first gradient index lens are in contact with each other.
- 20. The planar optical structure of claim 17 wherein the first gradient index lens has a gradient in index-of-refraction in first dimension oriented by a first axis and wherein the second gradient index lens has a gradient in index-of-refraction along a second dimension oriented by a second axis approximately perpendicular to the first axis.
- 21. An optical fiber comprising a first gradient index lens and a cladding, the first gradient index lens having an index-of-refraction varying in a single dimension relative to a central plane along a first axis and the cladding being located at least along the edges of the central plane wherein the cladding has an index-of-refraction lower than the gradient index lens along the central plane.
- 22. The optical fiber of claim 21 wherein the gradient index lens is optically connected to a first core and a second core wherein the first core and the second core have different diameters.
- 23. The optical fiber of claim 21 further comprising a second gradient index lens in optical communication with the first gradient index lens.
- 24. The optical fiber of claim 23 wherein the second gradient index lens has an index of refraction varying in a single dimension along a second axis that is not parallel to the first axis.
- 25. The optical fiber of claim 21 wherein the gradient index lens comprises glass.
- 26. A method for forming a planar optical structure, the method comprising forming a core layer of a planar optical waveguide in optical communication with a planar gradient index lens.
- 27. An optical structure comprising a first optical core, a second optical core, a gradient index lens and a free space optical element, wherein the first optical core, the second optical core and gradient index lens are within a monolithic optical structure and the free space optical element is within a cut out in the monolithic optical structure and wherein the gradient index lens optically connects the first optical structure and the free space optical element optically connects the first optical core and the second optical core.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to copending U.S. Provisional Patent Application Serial No. 60/288,533 to Bryan, entitled “Optical Material With Selected Index Of Refraction,” incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60288533 |
May 2001 |
US |