Claims
- 1. A method for fabricating a compound optic for short wavelength radiation, the method comprising:
removing material of a substrate to form a surface profile of a first optical element of the compound optic; and forming the second optical element of the compound optic.
- 2. A method as claimed in claim 1, wherein the step of removing the material comprises applying a tool tip of a turning machine to the substrate to mechanically remove the material.
- 3. A method as claimed in claim 1, wherein the step of removing the material comprises directing a beam at the substrate.
- 4. A method as claimed in claim 3, further comprising forming calibration features in the substrate.
- 5. A method as claimed in claim 4, further comprising forming the calibration features by electron beam lithography.
- 6. A method as claimed in claim 4, wherein the calibration features comprise linear scales in the plane of the first optical element.
- 7. A method as claimed in claim 4, wherein the calibration features comprise trenches extending into the substrate.
- 8. A method as claimed in claim 4, further comprising forming trench calibration features in the substrate prior to the step of directing the beam at the substrate.
- 9. A method as claimed in claim 8, wherein the trenches are formed by lithography.
- 10. A method as claimed in claim 8, wherein the trenches set the desired step profile for the first optical element.
- 11. A method as claimed in claim 3, wherein the step of directing a beam comprises directing a laser beam at the substrate to ablate the material.
- 12. A method as claimed in claim 3, wherein the step of directing a beam comprises directing an electron beam at the substrate to ablate the material.
- 13. A method as claimed in claim 3, wherein the step of directing a beam comprises directing an ion beam at the substrate to ablate the material.
- 14. A method as claimed in claim 3, wherein the step of directing a beam comprises directing a plasma beam at the substrate to ablate the material.
- 15. A method as claimed in claim 1, further comprising forming an optical port on a backside of the substrate.
- 16. A method as claimed in claim 15, wherein the step of forming the second optical element comprises forming the element in the optical port.
- 17. A method as claimed in claim 15, wherein the step of forming the second optical element comprises forming a zone plate lens.
- 18. A method as claimed in claim 1, wherein the step of removing the material comprises etching into the substrate through a patterned resist layer to transfer a pattern of the resist layer into the substrate.
- 19. A method as claimed in claim 1, wherein the step of removing the material comprises selectively reacting a surface of the substrate to remove the material.
- 20. A method as claimed in claim 19, wherein the step of selectively reacting the surface comprises directing a laser beam at the surface through a chlorine atmosphere.
- 21. A method for fabricating a compound optic for short wavelength radiation, the method comprising:
forming a surface profile of a first optical element of the compound optic on a substrate; forming a fiducial mark on the substrate; and forming the second optical element of the compound optic by reference to the fiducial mark
- 22. A method as claimed in claim 21, further comprising forming an optical port on a backside of the substrate
- 23. A method as claimed in claim 22, wherein the step of forming the second optical element comprising forming the second optical element in the optical port.
- 24. A method as claimed in claim 21, wherein the step of forming the second optical element comprises forming a zone plate lens.
- 25. An optical element for short wavelength radiation, the element comprising:
concentric rings for focusing a beam of short wavelength radation; and segments extending at least partially radially between the concentric rings to support the rings.
- 26. An optical element as claimed in claim 25, further comprising a frame extending around at least a portion of a perimeter of the concentric rings, segments extending between the rings and the frame to support the rings in the frame.
- 27. An optical element as claimed in claim 25, wherein the optical element is a zone plate lens.
- 28. An optical element as claimed in claim 25, wherein the optical element is a Fresnel refractive lens.
- 29. An optical element as claimed in claim 25, wherein the concentric rings are fabricated from silicon.
- 30. An optical element as claimed in claim 25, wherein the concentric rings are fabricated from copper.
RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Appl. No. 60/419,331, filed Oct. 17, 2002, which is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60419331 |
Oct 2002 |
US |