Claims
- 1. An apparatus for providing a focused radiation beam with controllable convergence, said apparatus comprising:
- a multiple-channel, total-external reflection optic ("optic") having an input end for receiving radiation, an output end for providing said focused radiation beam, and an optical axis, said focused radiation beam having an angle of convergence at a focal spot a focal length from the output end of said optic; and
- means for varying the angle of convergence of the focused radiation beam without effecting focal spot size or said focal length of said focal spot from said output end of said optic, said means for varying the angle of convergence comprising a radiation blocking structure disposed at said input end of said optic for blocking radiation from reaching at least some channels of said optic such that said angle of convergence of said focused radiation beam at said focal spot spaced said focal length from the output end of said optic is variably controlled.
- 2. The apparatus of claim 1, wherein said radiation blocking structure includes a radiation transmitting portion, said radiation transmitting portion being disposed about said optical axis of said optic.
- 3. The apparatus of claim 2, wherein said radiation blocking structure comprises multiple radiation transmitting portions, said radiation transmitting portion disposed about said optical axis comprising one radiation transmitting portion of said multiple radiation transmitting portions, each radiation transmitting portion having one of a unique size and a unique shape, wherein said radiation blocking structure is movable for disposition of any one radiation transmitting portion of said multiple radiation transmitting portions about the optical axis, wherein different radiation transmitting portions of said multiple radiation transmitting portions effectuate different angles of convergence of the focused radiation beam at the focal spot said focal length from the output end of the optic.
- 4. The apparatus of claim 2, wherein said radiation blocking structure is movable along said optical axis, relative to said input end of said optic, such that said radiation blocking structure blocks radiation from reaching different channels of said optic depending upon spacial disposition thereof along said optical axis relative to the input end of said optic, thereby affecting said angle of convergence of the focused radiation beam at the focal spot said focal length from the output end of the optic.
- 5. The apparatus of claim 1, wherein said radiation blocking structure comprises a radiation transmitting portion disposed about the optical axis, said radiation transmitting portion having at least one of an adjustable size and an adjustable shape such that said radiation transmitting portion disposed about said optical axis is variable within a predetermined range.
- 6. The apparatus of claim 5, wherein said radiation blocking structure comprises a plurality of adjustable opaque sections, each adjustable opaque section being capable of blocking radiation, said plurality of adjustable opaque sections cooperating to define said radiation transmitting portion, wherein adjustment of said plurality of adjustable opaque sections varies at least one of the size and the shape of said radiation transmitting portion disposed about said optical axis.
- 7. The apparatus of claim 1, further comprising a plurality of radiation blocking structures, wherein said radiation blocking structure comprises one radiation blocking structure of said plurality of radiation blocking structures, each radiation blocking structure having a radiation transmitting portion of unique size or shape disposed such that when positioned at said input end of said optic, said radiation transmitting portion is disposed about said optical axis and said radiation blocking structure can block radiation from reaching at least some channels of said optic, thereby controlling the angle of convergence of said focused radiation beam at said focal point spaced said focal length from said output end of said optic.
- 8. An apparatus for providing a focused radiation beam having a controlled convergence, said apparatus comprising:
- a multiple-channel, total-external reflection optic ("optic") having an input end for receiving radiation, an output end for providing said focused radiation beam, and an optical axis, said focused radiation beam having an angle of convergence at a focal spot a focal length from the output end of said optic; and
- means for varying the angle of convergence of the focused radiation beam without effecting focal spot size or said focal length of said focal spot from said output end of said optic, said means for varying the angle of convergence comprising a radiation absorbing structure disposed at said output end of said optic for absorbing radiation exiting at least some channels of said optic such that said angle of convergence of said focused radiation beam at said focal spot spaced said focal length from the output end of said optic is variably controlled.
- 9. The apparatus of claim 8, wherein said radiation absorbing structure includes a radiation transmitting portion, said radiation transmitting potion being disposed about said optical axis of said optic.
- 10. An apparatus for providing a focused radiation beam with variable convergence, said apparatus comprising:
- a radiation focusing device having an input, an output, and an optical axis, said input being oriented to receive radiation, said output providing said focused radiation beam with said variable convergence at a focal spot a focal length from the output end of said optic, said radiation focusing device further comprising
- a multiple-channel, total-external reflection optic ("optic") having an input end and an output end, said input end being oriented as said input of said radiation focusing device and said output end being oriented as said output of said radiation focusing device, a center axis of said optic defining said optical axis, and
- means for varying an angle of convergence of the focused radiation beam at the focal spot without effecting focal spot size or said focal length of said focal spot from said output end of said optic, said means for varying the angle of convergence comprising a radiation blocking structure disposed adjacent to one of the input end and the output end of said optic, said radiation blocking structure being such that at least some channels of said multiple-channel, total-external reflection optic are blocked from contributing radiation to the focused radiation beam output from said radiation focusing device, wherein blocking of said at least some channels of said optic controls the angle of convergence of said focused radiation beam at said focal spot spaced said focal length from the output of said radiation focusing device.
- 11. The apparatus of claim 10, wherein said radiation blocking structure includes a radiation transmitting portion, said radiation transmitting portion being disposed about said optical axis.
- 12. The apparatus of claim 11, wherein said radiation blocking structure comprises multiple radiation transmitting portions, said radiation transmitting portion disposed about said optical axis comprising one radiation transmitting portion of said multiple radiation transmitting portions, each radiation transmitting portion having one of a unique size and a unique shape, wherein said radiation blocking structure is movable for disposition of any one radiation transmitting portion of said multiple radiation transmitting portions with the optical axis, wherein different radiation transmitting portions of said multiple radiation transmitting portions effectuate different angles of convergence of the focused radiation beam at the focal spot said focal length from the output of said radiation focusing device.
- 13. The apparatus of claim 11, wherein said radiation blocking structure is movable along said optical axis, relative to one of said input end and said output end of said optic, such that said radiation blocking structure blocks radiation from different channels of said optic depending upon spacial disposition thereof along said optical axis relative to said one of said input end and said output end of said optic, thereby affecting said angle of convergence of the focused radiation beam at the focal spot said focal length from the output of the radiation focusing device.
- 14. The apparatus of claim 11, wherein said radiation transmitting portion has at least one of an adjustable size and an adjustable shape such that said radiation transmitting portion intersecting said optical axis is variable within a predetermined range.
- 15. The apparatus of claim 14, wherein said radiation blocking structure comprises a plurality of adjustable opaque sections, each adjustable opaque section being capable of blocking radiation, said plurality of adjustable opaque sections cooperating to define said radiation transmitting portion, wherein adjustment of said plurality of adjustable opaque sections varies at least one of the size and the shape of said radiation transmitting portion disposed about said optical axis.
- 16. The apparatus of claim 10, wherein said means for varying the angle of convergence further comprises a plurality of radiation blocking structures, said radiation blocking structure comprising one radiation blocking structure of said plurality of radiation blocking structures, each radiation blocking structure having a radiation transmitting portion of unique size or shape disposed such that when positioned at one of said input end and said output end of said optic, said radiation transmitting portion is disposed about said optical axis and said radiation blocking structure blocks at least some channels of said optic from contributing radiation to the focused radiation beam output from the radiation focusing device such that said angle of convergence of said focused radiation beam at said focal spot disposed said focal length from the output of said radiation focusing device is controlled.
- 17. A method for controlling convergence of a radiation beam, said method comprising the steps of:
- (a) employing a multiple-channel, total-external reflection optic ("optic") to define said radiation beam, said optic having an input end for receiving radiation, and an output end for outputting said radiation beam, said optic being designed such that said radiation beam has an angle of convergence at a focal spot a focal length from the output end of the optic; and
- (b) blocking radiation at said input end of said optic from reaching at least some channels of said optic such that said angle of convergence of the radiation beam at said focal spot is varied without varying said focal length of said focal spot from the output end of the optic.
- 18. A method for controlling convergence of a radiation beam, said method comprising the steps of:
- (a) employing a multiple-channel, total-external reflection optic ("optic") to define the radiation beam, said optic having an input end for receiving radiation and an output end for outputting said radiation beam, said optic being designed such that said radiation beam has an angle of convergence at a focal spot a focal length from the output end of the optic; and
- (b) absorbing radiation from at least some channels of said optic at the output end of said optic such that said angle of convergence of the radiation beam at said focal spot is varied without varying said focal length of said focal spot from said output end of said optic.
GOVERNMENT LICENSE RIGHTS
This invention was made with U.S. Government support under Contract No. DE-FG02-91ER81220 awarded by the Department of Energy. The Government has certain rights in this invention.
US Referenced Citations (10)
Foreign Referenced Citations (1)
Number |
Date |
Country |
56-30295 |
Jan 1981 |
JPX |