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Method for the precise measurement of the wavelength of light 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01N-021/00
출원번호 US-0059198 (2005-02-16)
등록번호 US-7259856 (2007-08-21)
발명자 / 주소
  • Kachanov,Alexander
  • Tan,Sze
  • Paldus,Barbara
출원인 / 주소
  • Picarro, Inc.
대리인 / 주소
    Lumen Intellectual Property Services, Inc.
인용정보 피인용 횟수 : 36  인용 특허 : 4

초록

Improved cavity ring down spectroscopy is provided by binning decay time vs. wavelength data into wavelength bins defined by discontinuities in a wavelength monitor signal. Average decay times and average wavelengths are computed for each bin. The optical loss of a target analyte at the average wave

대표청구항

The invention claimed is: 1. A process for measuring the absorption spectrum of a target analyte using a cavity ring down spectrometer comprising a tunable laser light source, a wavelength monitor which measures the wavelength of the light emitted by said laser and provides an output signal based o

이 특허에 인용된 특허 (4)

  1. Paul, Joshua B; Scherer, James J; O'Keefe, Anthony, Absorption spectroscopy instrument with off-axis light insertion into cavity.
  2. Chilese,Frank; Fidric,Bernard, Apparatus and method for maintaining uniform and stable temperature for cavity enhanced optical spectroscopy.
  3. Orr,Brian J.; He,Yabai, Optical heterodyne detection in optical cavity ringdown spectroscopy.
  4. Lehmann Kevin K. (Lawrenceville NJ), Ring-down cavity spectroscopy cell using continuous wave excitation for trace species detection.

이 특허를 인용한 특허 (36)

  1. Martini, Joerg; Kiesel, Peter; Huck, Malte; Bern, Marshall W.; Johnson, Noble M.; Bassler, Michael; Beck, Markus, Analyzers with time variation based on color-coded spatial modulation.
  2. Cole, Barrett E.; Marta, Terry, Beam intensity detection in a cavity ring down sensor.
  3. Kachanov, Alexander; Koulikov, Serguei, Cavity enhanced laser based gas analyzer systems and methods.
  4. Kachanov, Alexander; Koulikov, Serguei, Cavity enhanced laser based gas analyzer systems and methods.
  5. Kachanov, Alexander; Koulikov, Serguei, Cavity enhanced laser based gas analyzer systems and methods.
  6. Koulikov, Sergeui; Kachanov, Alexander, Cavity enhanced laser based isotopic gas analyzer.
  7. Koulikov, Serguei; Kachanov, Alexander, Cavity enhanced laser based isotopic gas analyzer.
  8. Koulikov, Serguei; Kachanov, Alexander, Cavity enhanced laser based isotopic gas analyzer.
  9. Newbury, Nathan R.; Coddington, Ian; Swann, William C., Comb-based spectroscopy with synchronous sampling for real-time averaging.
  10. Newbury, Nathan R.; Coddington, Ian; Swann, William C., Comb-based spectroscopy with synchronous sampling for real-time averaging.
  11. Kiesel, Peter; Martini, Joerg, Compact analyzer with spatial modulation and multiple intensity modulated excitation sources.
  12. Cox, James Allen; Cole, Barrett E., Compact gas sensor using high reflectance terahertz mirror and related system and method.
  13. Martini, Joerg; Roe, Jeffrey; Kiesel, Peter; Bassler, Michael; Bell, Alan; Bruce, Richard H.; Johnson, Noble M., Controlling transfer of objects affecting optical characteristics.
  14. Martini, Joerg; Roe, Jeffrey; Kiesel, Peter; Bassler, Michael; Bell, Alan; Bruce, Richard H.; Johnson, Noble M., Controlling transfer of objects affecting optical characteristics.
  15. Kiesel, Peter; Schmidt, Oliver; Bassler, Michael, Distinguishing objects.
  16. Fritz, Bernard, Enhanced cavity for a photoacoustic gas sensor.
  17. Cox, James Allen; Higashi, Robert, High reflectance terahertz mirror and related method.
  18. Kiesel, Peter; Schmidt, Oliver; Bassler, Michael; Bruce, Richard H.; Johnson, Noble M., Implanting optical cavity structures.
  19. Kiesel, Peter; Schmidt, Oliver; Bassler, Michael; Bruce, Richard H.; Johnson, Noble M., Implanting optical cavity structures.
  20. Freund, Robert F.; Mehta, Rajendra, In-mold labeled article and method.
  21. Koulikov, Serguei; Kachanov, Alexander, Laser based cavity enhanced optical absorption gas analyzer.
  22. Koulikov, Serguei; Kachanov, Alexander, Laser based cavity enhanced optical absorption gas analyzer with laser feedback optimization.
  23. Yalin, Azer P., Laser sensor for trace gas detection.
  24. Kachanov, Alexander; Koulikov, Serguei, Method and apparatus for locking a laser with a resonant cavity.
  25. Bassler, Michael; Kiesel, Peter; Schmidt, Oliver; Johnson, Noble M., Method and system implementing spatially modulated excitation or emission for particle characterization with enhanced sensitivity.
  26. Bassler, Michael; Kiesel, Peter; Schmidt, Oliver; Johnson, Noble M., Method and system implementing spatially modulated excitation or emission for particle characterization with enhanced sensitivity.
  27. Cole, Barrett E.; Marta, Terry; Cox, James Allen; Nusseibeh, Fouad, Multiple wavelength cavity ring down gas sensor.
  28. Kiesel, Peter; Bruce, Richard H.; Bassler, Michael, Particle analyzer with spatial modulation and long lifetime bioprobes.
  29. Kiesel, Peter; Schmidt, Oliver; Bassler, Michael; Srinivasan, Uma, Processes for producing tunable optical cavities.
  30. Freund, Robert Frank, RFID systems and graphic image fusion.
  31. Hoffnagle, John A.; Tan, Sze Meng; Rella, Chris W., Regular, stable optical frequency scale for cavity enhanced optical spectroscopy.
  32. Abrams, Fredric Louis; Freund, Robert Frank, Security information and graphic image fusion.
  33. Rella, Chris W.; Tan, Sze M.; He, Yonggang, Self-referencing cavity enhanced spectroscopy (SRCES) systems and methods.
  34. Cole, Barrett E.; Cox, James Allen; Gu, Yuandong; Thorland, Rodney H., Spectroscopy method and apparatus for detecting low concentration gases.
  35. Kiesel, Peter; Beck, Markus; Johnson, Noble M.; Bassler, Michael, Transmitting/reflecting emanating light with time variation.
  36. Kiesel, Peter; Schmidt, Oliver; Bassler, Michael; Srinivasan, Uma, Tuning optical cavities.
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