Claims
- 1. A spectrometer comprising:
- a collimator for collimating incident radiation;
- a dispersing element for spectrally dispersing said collimated incident radiation into at least two portions of radiation;
- at least two pairs of optical fiber, each said pair of optical fibers comprised of an input optical fiber and an output optical fiber, each said input optical fiber receiving one of said portions of radiation and transmitting said portion of radiation to said output optical fiber;
- an optical switch associated with each said pair of optical fibers, each said optical switch for selectively enabling the transmission of said portion of radiation from said input optical fiber to said output optical fiber; and
- a detector for receiving said portion of radiant from said output optical fibers and for sensing the intensity of said portion of radiation.
- 2. The spectrometer of claim 1 wherein said output fibers are twisted thereby focusing said portions of radiation from said output fibers onto said detector.
- 3. The spectrometer of claim 1 further comprising:
- a parabolic mirror between said output fibers and said detector for focusing said portions of radiation from said output fibers onto said detector.
- 4. The spectrometer of claim 1 further comprising:
- a lens between said output fibers and said detector for focusing said portions of radiation from said output fibers onto said detector.
- 5. The spectrometer of claim 1 wherein said input optical fibers receive a higher order portion of radiation.
- 6. The spectrometer of claim 1 wherein said optical switch is a deformable mirror device.
- 7. The spectrometer of claim 1 wherein said optical switch is a liquid crystal device.
- 8. A spectrometer comprising:
- a collimator for collimating incident radiation;
- a dispersing element for spectrally dispersing said collimated incident radiation into at least two portions of radiation;
- at least two pairs of optical fibers, each said pair of optical fibers comprised of an input optical fiber and an output optical fiber, each said input optical fiber receiving one of said portions of radiation and transmitting said portion of radiation to said output optical fiber;
- a deformable micromirror device associated with each said pair of optical fibers, each said deformable micromirror device for selectively enabling the transmission of said portion of radiation from said input optical fiber to said output optical fiber; and
- a detector for receiving said portion of radiant from said output optical fibers and for sensing the intensity of said portion of radiation.
- 9. The spectrometer of claim 8 wherein said output fibers are twisted thereby focusing said portions of radiation from said output fibers onto said detector.
- 10. The spectrometer of claim 8 further comprising:
- a parabolic mirror between said output fibers and said detector for focusing said portions of radiation from said output fibers onto said detector.
- 11. The spectrometer of claim 8 further comprising:
- a lens between said output fibers and said detector for focusing said portions of radiation from said output fibers onto said detector.
- 12. The spectrometer of claim 8 wherein said input optical fibers receive a higher order portion of radiation.
Parent Case Info
This application is a continuation of application Ser. No. 07/812,508, filed Dec. 20, 1991, now abandoned.
US Referenced Citations (14)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0075171A1 |
Mar 1983 |
EPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
812508 |
Dec 1991 |
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