Claims
- 1. An optical device, comprising:
a single-mode waveguide which supports a first optical mode in a first region and a second optical mode in a second region, said waveguide including a single material guiding layer having a lower portion with a first taper and an upper portion with a second taper.
- 2. An optical device as recited in claim 1, wherein said first taper is at a first angle, and said second taper is at a second angle.
- 3. An optical device as recited in claim 1, wherein said single material guiding layer is a single layer.
- 4. An optical device as recited in claim1, wherein said second region terminates at an endface.
- 5. An optical device as recited in claim 4, wherein said single material guiding layer has a first width in said first region and a second width at said endface.
- 6. An optical device as recited in claim 4, wherein said single material guiding layer has a first thickness in said first region and a second thickness at said endface.
- 7. An optical device as recited in claim 1, wherein said single material guiding layer has a width and said width decreases from a first width to a second width
- 8. An optical device as recited in claim1, wherein said single material guiding layer has a thickness and said thickness decreases from a first thickness to a second thickness.
- 9. A An optical device as recited in claim 1, wherein said guiding single material is chosen from the group consisting essentially of silicon, silicon oxynitride, SiO2, Si3N4, and InP.
- 10. An optical device as recited in claim 1, wherein said first optical mode is more tightly confined than said second optical mode in said guiding layer.
- 11. An optical device as recited in claim 2, wherein said first angle is in the range of approximately 0° to approximately 0.5°.
- 12. An optical device as recited in claim 2, wherein said second angle is in the range of approximately 0° to approximately 0.5°.
- 13. An optical device as recited in claim 2, wherein said upper portion adiabatically transforms a vertical portion of said first optical mode.
- 14. An optical device as recited in claim 6, wherein said first thickness is approximately 2.0 micrometers to approximately 4.0 micrometers, and said second thickness is approximately 1.0 micrometers to approximately 2.0 micrometers.
- 15. An optical device as recited in claim 2, wherein said upper portion is symmetric about an axis which bisects said lower portion.
- 16. An optical device as recited in claim 2, wherein said upper portion is asymmetric about an axis which bisects said lower portion.
- 17. An optical device as recited in claim 1, wherein said single material guiding layer is a plurality of layers.
- 18. An optical device as recited in claim 1, wherein said guiding layer further comprises:
at intermediate portion having a third taper and being disposed between said lower portion and said upper portion.
- 19. An optical device as recited in claim 1, wherein said second region terminates at an end face and said end face couples to another waveguide.
- 20. An optical device as recited in claim 4, wherein said end face has a thickness of approximately 1.0 micrometers to approximately 2.0 micrometers.
- 21. An optical device as recited in claim 1, wherein said single material guiding layer is disposed on a stress compensating layer.
- 22. An optical device as recited in claim 1, wherein said waveguide couples a planar waveguide to an optical fiber.
- 23. An optical device as recited in claim 1, wherein said first region is coupled to another optical waveguide.
- 24. A waveguide as recited in claim 23, wherein said another waveguide is planar.
- 25. A waveguide as recited in claim 1, wherein said lower portion is a diffused guiding layer.
- 26. An optical device comprising:
A single-mode waveguide including a single material guiding layer having a lower portion which tapers from a first width to a second width, and an upper portion which tapers from said first width to a point.
- 27. An optical device as recited in claim 26, wherein said single material guiding layer has a thickness which decreases from a first thickness (t1) to a second thickness (t2).
- 28. An optical device as recited in claim 27, wherein said single material guiding layer further includes a guiding section having an endface, and said guiding section has said second width and said second thickness.
- 29. An optical device as recited in claim 26, wherein said lower portion tapers at a first angle and said upper portion tapers at a second angle.
- 30. An optical device as recited in claim 26, wherein said upper portion is symmetric about an axis that bisects said guiding layer.
- 31. An optical device as recited in claim 26, wherein said upper portion is asymmetric about an axis that bisects said guiding layer.
- 32. An optical device as recited in claim 31, wherein said lower portion is asymmetric about an axis that bisects said guiding layer.
- 33. An optical device as recited in claim 26, wherein said guiding single material is chosen from the group consisting essentially of silicon, silicon oxynitride, SiO2, Si3N4 and InP.
- 34. An optical device as recited in claim 26, wherein sad first angle is in the range of approximately 0° to approximately 0.5°.
- 35. An optical device as recited in claim 26, wherein said second angle is in the range of approximately 0° to approximately 0.5°.
- 36. An optical device as recited in claim 26, wherein said first width is in the range of approximately 1 micron to approximately 10 microns.
- 37. An optical device as recited in claim 26, wherein said second width is in the range of approximately 0.1 microns to approximately 10 microns.
- 38. An optical device as recited in claim 27, wherein said first thickness is in the range of approximately 2 μm to approximately 4 μm.
- 39. An optical device as recited in claim 27, wherein said first thickness is in the range of approximately 1 μm to approximately 2 m.
- 40. An optical device, comprising:
a single-mode waveguide which supports a first optical mode in a first region and a second optical mode in a second region, said waveguide including a single material guiding layer having a lower portion with a first taper and an upper portion with a second taper, wherein the first taper of the lower portion consists essentially of a horizontal taper, and wherein the second taper of the upper portion consists essentially of a horizontal taper.
- 41. An optical device comprising:
A single-mode waveguide including a single material guiding layer having a lower portion which tapers horizontally from a first width to a second width, the lower portion having at least one edge, and an upper portion which tapers horizontally from said first width to a point terminating on an edge of the lower portion.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims priority from U.S. Provisional Patent Application Serial No. 60/255,868 filed Dec. 14, 2000, entitled “Optical Waveguide Termination With Vertical and Horizontal Mode Shaping.”, and U.S. Provisional Patent Application Serial No. 60/287,032 filed Apr. 30, 2001, entitled “Optical Waveguide Termination With Vertical and Horizontal Mode Shaping.” The disclosure of the above referenced provisional patent applications is specifically incorporated by reference herein.
PCT Information
| Filing Document |
Filing Date |
Country |
Kind |
| PCT/US01/51497 |
12/14/2001 |
WO |
|