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Frequency conversion system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01S-003/30
출원번호 US-0734629 (2000-12-11)
발명자 / 주소
  • Sanders Steven
  • Waarts Robert G.
출원인 / 주소
  • SDL, Inc.
대리인 / 주소
    Carothers, Jr.
인용정보 피인용 횟수 : 65  인용 특허 : 9

초록

A frequency conversion system comprises first and second gain sources providing first and second frequency radiation outputs where the second gain source receives as input the output of the first gain source and, further, the second gain source comprises a Raman or Brillouin gain fiber for wave shif

대표청구항

[ What is claimed is:] [1.]1. A frequency conversion system comprising:a first gain source for providing a first frequency radiation output;a second gain source for receiving as input the first frequency output from said first gain source, said second gain source, comprising an optical fiber selecte

이 특허에 인용된 특허 (9)

  1. Fritz Daniel J. (East Longmeadow MA) Bailey Timothy J. (Longmeadow MA) Ball Gary A. (Simsbury CT), All fiber wavelength selective optical switch.
  2. Sorin Wayne V. (Mountain View CA), Broadband tunable in-line filter for fiber optics.
  3. Morey William W. (West Hartford CT) Wilson Arnold L. (Bolton CT), Compression-tuned fiber grating.
  4. Waarts, Robert G.; Welch, David F.; Scifres, Donald R.; Lang, Robert J.; Nam, Derek W., Frequency converted laser diode and lens system therefor.
  5. Sanders Steven ; Lang Robert J. ; Waarts Robert G., High power pumped mid-IR wavelength systems using nonlinear frequency mixing (NFM) devices.
  6. Huber David R. (Warrington PA), Method for producing a tunable erbium fiber laser.
  7. Grubb Stephen G. (Warren NJ), Optical fiber laser or amplifier including high reflectivity gratings.
  8. Welch David F. (Palo Alto CA) Mehuys David G. (Menlo Park CA) Scifres Donald R. (San Jose CA), Semiconductor laser with integral spatial mode filter.
  9. Morey William W. (West Hartford CT) Leonberger Fred J. (Glastonbury CT) Glenn William H. (Vernon CT) Meltz Gerald (Avon CT), Variable optical fiber Bragg filter arrangement.

이 특허를 인용한 특허 (65)

  1. Honea, Eric C.; Hu, Yongdan, Apparatus and method for fiber-laser output-beam shaping for spectral beam combination.
  2. Honea, Eric C.; Jander, Donald R.; Madasamy, Pratheepan; Yilmaz, Tolga, Beam diagnostics and feedback method and system for spectrally beam-combined lasers.
  3. Honea, Eric C.; Jander, Donald R.; Madasamy, Pratheepan; Yilmaz, Tolga, Beam diagnostics and feedback system and method for spectrally beam-combined lasers.
  4. Kane, Thomas J.; Keaton, Gregory L., Blue laser based on interactions in fiber.
  5. Arbore, Mark A., Communication system using S-band Er-doped fiber amplifiers with depressed cladding.
  6. Hirth, Antoine; Eichhorn, Marc, Device for generating laser radiation in the infrared.
  7. Arbore, Mark A.; Keaton, Gregory L., Fiber amplifiers with depressed cladding and their uses in Er-doped fiber amplifiers for the S-band.
  8. Tominaga, Keisuke; Tanaka, Kanji, Fiber laser modulation method and modulator.
  9. Kane, Thomas J.; Arbore, Mark A.; Keaton, Gregory L., L-band optical amplifier based on thulium-doped silica fiber with cut-off.
  10. Ungar,Jeffrey E.; Lammert,Robert M., Laser diode with phase matching grating.
  11. Furuya, Hiroyuki; Mizuuchi, Kiminori; Yamamoto, Kazuhisa, Laser light source device and image display apparatus.
  12. Islam, Mohammed N., Light-based spectroscopy with improved signal-to-noise ratio.
  13. Islam, Mohammed N., Measurement apparatus for physiological parameters.
  14. Honea, Eric C.; Hu, Yongdan, Method and apparatus for fiber-laser output-beam shaping for beam combination.
  15. Tidwell, Steven C.; Loftus, Thomas H.; Lemaire, Charles A., Method and apparatus for spectral-beam combining of fanned-in laser beams with chromatic-dispersion compensation using a plurality of diffractive gratings.
  16. Savage-Leuchs, Matthias P., Method and optical gain fiber having segments of differing core sizes.
  17. Roques,Sandrine; Lopez,Christian, Method for illuminating particles for the purpose of forming their images.
  18. Keaton,Gregory L.; Arbore,Mark A.; Kane,Thomas J., Method of making a short-pass fiber with controlled cut-off wavelength.
  19. Galvanauskas, Almantas; Harter, Donald J.; Fermann, Martin E.; Raksi, Ferenc, Microchip-Yb fiber hybrid optical amplifier for micro-machining and marking.
  20. Fermann, Martin E., Mode-locked multi-mode fiber laser pulse source.
  21. Fermann, Martin E., Mode-locked multi-mode fiber laser pulse source.
  22. Fermann, Martin E.; Harter, Donald J., Multi-mode fiber amplifier.
  23. Fermann, Martin E.; Harter, Donald J., Multi-mode fiber amplifier.
  24. Fermann, Martin E.; Harter, Donald J., Multi-mode fiber amplifier.
  25. Harter, Donald J.; Fermann, Martin E., Multimode amplifier for amplifying single mode light.
  26. Bonaccini,Domenico; Hackenberg,Wolfgang, Narrow band high power fibre lasers with extended wavelength coverage.
  27. Islam, Mohammed N., Near-infrared laser diodes used in imaging applications.
  28. Islam, Mohammed N., Near-infrared lasers for non-invasive monitoring of glucose, ketones, HBA1C, and other blood constituents.
  29. Islam, Mohammed N., Near-infrared lasers for non-invasive monitoring of glucose, ketones, HbA1C, and other blood constituents.
  30. Islam, Mohammed N., Near-infrared super-continuum lasers for early detection of breast and other cancers.
  31. Islam, Mohammed N., Near-infrared time-of-flight imaging.
  32. Savage-Leuchs, Matthias P., Optical gain fiber having segments of differing core sizes and associated method.
  33. Savage-Leuchs, Matthias P., Optical gain fiber having tapered segments of differing core sizes and associated method.
  34. Traynor, Nicholas; Boullet, Johan; Cormier, Eric; Bello Doua, Ramatou, Optical source implementing a doped fiber, fiber for such an optical source and method for manufacturing such a fiber.
  35. Hu, Yongdan; Lemaire, Charles A., Optical-fiber array method and apparatus.
  36. Islam, Mohammed N., Physiological measurement device using light emitting diodes.
  37. Bufetov, Igor Alexeevich; Dianov, Evgeny Mikhailovich; Kurkov, Andrei Semenovich, Raman fiber laser.
  38. Arbore, Mark A.; Zhou, Yidong; Kmetec, Jeffrey D., S-band light sources using erbium-doped fiber with depressed cladding.
  39. Islam, Mohammed N., Short-wave infrared super-continuum lasers and similar light sources for imaging applications.
  40. Islam, Mohammed N., Short-wave infrared super-continuum lasers for detecting counterfeit or illicit drugs and pharmaceutical process control.
  41. Islam, Mohammed N., Short-wave infrared super-continuum lasers for detecting counterfeit or illicit drugs and pharmaceutical process control.
  42. Islam, Mohammed N., Short-wave infrared super-continuum lasers for early detection of dental caries.
  43. Islam, Mohammed N., Short-wave infrared super-continuum lasers for early detection of dental caries.
  44. Islam, Mohammed N., Short-wave infrared super-continuum lasers for early detection of dental caries.
  45. Islam, Mohammed N., Short-wave infrared super-continuum lasers for natural gas leak detection, exploration, and other active remote sensing applications.
  46. Islam, Mohammed N., Short-wave infrared super-continuum lasers for natural gas leak detection, exploration, and other active remote sensing applications.
  47. Islam, Mohammed N., Short-wave infrared super-continuum lasers for natural gas leak detection, exploration, and other active remote sensing applications.
  48. Islam, Mohammed N., Short-wave infrared super-continuum lasers for natural gas leak detection, exploration, and other active remote sensing applications.
  49. Tojo, Koji, Solid laser apparatus.
  50. Liu, Anping; Honea, Eric C.; Lemaire, Charles A.; Mead, Roy D.; Brooks, Christopher D.; Brown, Andrew J. W.; Hamilton, Charles E.; Loftus, Thomas H.; Di Teodoro, Fabio, Spectral beam combination of laser beams.
  51. Mead, Roy D., Spectrally beam combined laser system and method at eye-safer wavelengths.
  52. Arbore,Mark A.; Kmetec,Jeffrey D.; Zhou,Yidong, Split-band amplifying apparatus using a depressed-profile fiber amplifier.
  53. Arbore, Mark A., Suppression of cladding mode loss in fiber amplifiers with distributed suppression of amplified spontaneous emission (ASE).
  54. Islam, Mohammed N., System and method for voice control of measurement apparatus.
  55. Islam, Mohammed N., System and method for voice control of medical devices.
  56. Islam, Mohammed N., System and method for voice control of medical devices.
  57. Islam, Mohammed N., System and method for voice control of medical devices.
  58. Islam, Mohammed N., System and method for voice control of medical devices.
  59. Islam, Mohammed N., System and method for voice control of medical devices.
  60. Islam, Mohammed N., System and method for voice control of medical devices.
  61. Islam, Mohammed N., System and method for voice control of medical devices.
  62. Islam, Mohammed N., System configured for measuring physiological parameters.
  63. Islam, Mohammed N., System configured for measuring physiological parameters.
  64. Ohkubo, Michio; Matsuura, Hiroshi, Wavelength conversion module.
  65. Islam, Mohammed N., Wearable devices using near-infrared light sources.
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