Abstract

The frequencies of eight D2O infrared absorptions near 9.4 μm, which are used in optically pumped submillimeter-wave lasers, have been measured by heterodyning CO2 and tunable-diode-laser radiations.

© 1978 Optical Society of America

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References

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  1. R. S. Eng, P. L. Kelley, A. R. Calawa, T. C. Harman, K. W. Nill, “Tunable diode laser measurements of water vapor absorption line parameters,” Mol. Phys. 28, 653–664 (1974).
    [CrossRef]
  2. F. Keilmann, R. L. Sheffield, J. R. Leite, M. S. Feld, A. Javan, “Optical pumping and tunable laser spectroscopy of the ν2 band of D2O,” Appl. Phys. Lett. 26, 19–22 (1975).
    [CrossRef]
  3. E. D. Hinkley, C. Freed, “Direct observation of Lorentzian lineshape as limited by quantum noise in a laser above threshold,” Phys. Rev. Lett. 23, 277–280 (1969).
    [CrossRef]
  4. T. W. Meyer, “Line broadening and collision studies of CO2 using the technique of saturation spectroscopy,” Ph.D. Thesis, University of California, Livermore (1974).
  5. C. L. Lin, J. H. Shaw, “Measurements of ν2 fundamental bands of D2O,” 31st Symposium on Molecular Spectroscopy, Columbus, Ohio (1976), paper FC10.
  6. S. M. Freund, G. Duxbury, M. Romheld, J. T. Tiedje, T. Oka, “Laser Stark spectroscopy in the 10μm region: the ν3 bands of CH3F,” J. Mol. Spectrosc. 52, 38–57 (1974).
    [CrossRef]
  7. F. R. Petersen, D. G. McDonald, J. D. Cupp, B. L. Danielson, “Accurate rotational constants, frequencies, and wavelengths from 12C16O2 lasers stabilized by saturated absorption,” in Laser Spectroscopy, R. G. Brewer, A. Mooradian, eds., Proceedings of an international conference on laser spectroscopy, Vail, Colorado, June 25–29, 1973 (Plenum, New York, 1974), pp. 555 – 569.

1975 (1)

F. Keilmann, R. L. Sheffield, J. R. Leite, M. S. Feld, A. Javan, “Optical pumping and tunable laser spectroscopy of the ν2 band of D2O,” Appl. Phys. Lett. 26, 19–22 (1975).
[CrossRef]

1974 (2)

R. S. Eng, P. L. Kelley, A. R. Calawa, T. C. Harman, K. W. Nill, “Tunable diode laser measurements of water vapor absorption line parameters,” Mol. Phys. 28, 653–664 (1974).
[CrossRef]

S. M. Freund, G. Duxbury, M. Romheld, J. T. Tiedje, T. Oka, “Laser Stark spectroscopy in the 10μm region: the ν3 bands of CH3F,” J. Mol. Spectrosc. 52, 38–57 (1974).
[CrossRef]

1969 (1)

E. D. Hinkley, C. Freed, “Direct observation of Lorentzian lineshape as limited by quantum noise in a laser above threshold,” Phys. Rev. Lett. 23, 277–280 (1969).
[CrossRef]

Calawa, A. R.

R. S. Eng, P. L. Kelley, A. R. Calawa, T. C. Harman, K. W. Nill, “Tunable diode laser measurements of water vapor absorption line parameters,” Mol. Phys. 28, 653–664 (1974).
[CrossRef]

Cupp, J. D.

F. R. Petersen, D. G. McDonald, J. D. Cupp, B. L. Danielson, “Accurate rotational constants, frequencies, and wavelengths from 12C16O2 lasers stabilized by saturated absorption,” in Laser Spectroscopy, R. G. Brewer, A. Mooradian, eds., Proceedings of an international conference on laser spectroscopy, Vail, Colorado, June 25–29, 1973 (Plenum, New York, 1974), pp. 555 – 569.

Danielson, B. L.

F. R. Petersen, D. G. McDonald, J. D. Cupp, B. L. Danielson, “Accurate rotational constants, frequencies, and wavelengths from 12C16O2 lasers stabilized by saturated absorption,” in Laser Spectroscopy, R. G. Brewer, A. Mooradian, eds., Proceedings of an international conference on laser spectroscopy, Vail, Colorado, June 25–29, 1973 (Plenum, New York, 1974), pp. 555 – 569.

Duxbury, G.

S. M. Freund, G. Duxbury, M. Romheld, J. T. Tiedje, T. Oka, “Laser Stark spectroscopy in the 10μm region: the ν3 bands of CH3F,” J. Mol. Spectrosc. 52, 38–57 (1974).
[CrossRef]

Eng, R. S.

R. S. Eng, P. L. Kelley, A. R. Calawa, T. C. Harman, K. W. Nill, “Tunable diode laser measurements of water vapor absorption line parameters,” Mol. Phys. 28, 653–664 (1974).
[CrossRef]

Feld, M. S.

F. Keilmann, R. L. Sheffield, J. R. Leite, M. S. Feld, A. Javan, “Optical pumping and tunable laser spectroscopy of the ν2 band of D2O,” Appl. Phys. Lett. 26, 19–22 (1975).
[CrossRef]

Freed, C.

E. D. Hinkley, C. Freed, “Direct observation of Lorentzian lineshape as limited by quantum noise in a laser above threshold,” Phys. Rev. Lett. 23, 277–280 (1969).
[CrossRef]

Freund, S. M.

S. M. Freund, G. Duxbury, M. Romheld, J. T. Tiedje, T. Oka, “Laser Stark spectroscopy in the 10μm region: the ν3 bands of CH3F,” J. Mol. Spectrosc. 52, 38–57 (1974).
[CrossRef]

Harman, T. C.

R. S. Eng, P. L. Kelley, A. R. Calawa, T. C. Harman, K. W. Nill, “Tunable diode laser measurements of water vapor absorption line parameters,” Mol. Phys. 28, 653–664 (1974).
[CrossRef]

Hinkley, E. D.

E. D. Hinkley, C. Freed, “Direct observation of Lorentzian lineshape as limited by quantum noise in a laser above threshold,” Phys. Rev. Lett. 23, 277–280 (1969).
[CrossRef]

Javan, A.

F. Keilmann, R. L. Sheffield, J. R. Leite, M. S. Feld, A. Javan, “Optical pumping and tunable laser spectroscopy of the ν2 band of D2O,” Appl. Phys. Lett. 26, 19–22 (1975).
[CrossRef]

Keilmann, F.

F. Keilmann, R. L. Sheffield, J. R. Leite, M. S. Feld, A. Javan, “Optical pumping and tunable laser spectroscopy of the ν2 band of D2O,” Appl. Phys. Lett. 26, 19–22 (1975).
[CrossRef]

Kelley, P. L.

R. S. Eng, P. L. Kelley, A. R. Calawa, T. C. Harman, K. W. Nill, “Tunable diode laser measurements of water vapor absorption line parameters,” Mol. Phys. 28, 653–664 (1974).
[CrossRef]

Leite, J. R.

F. Keilmann, R. L. Sheffield, J. R. Leite, M. S. Feld, A. Javan, “Optical pumping and tunable laser spectroscopy of the ν2 band of D2O,” Appl. Phys. Lett. 26, 19–22 (1975).
[CrossRef]

Lin, C. L.

C. L. Lin, J. H. Shaw, “Measurements of ν2 fundamental bands of D2O,” 31st Symposium on Molecular Spectroscopy, Columbus, Ohio (1976), paper FC10.

McDonald, D. G.

F. R. Petersen, D. G. McDonald, J. D. Cupp, B. L. Danielson, “Accurate rotational constants, frequencies, and wavelengths from 12C16O2 lasers stabilized by saturated absorption,” in Laser Spectroscopy, R. G. Brewer, A. Mooradian, eds., Proceedings of an international conference on laser spectroscopy, Vail, Colorado, June 25–29, 1973 (Plenum, New York, 1974), pp. 555 – 569.

Meyer, T. W.

T. W. Meyer, “Line broadening and collision studies of CO2 using the technique of saturation spectroscopy,” Ph.D. Thesis, University of California, Livermore (1974).

Nill, K. W.

R. S. Eng, P. L. Kelley, A. R. Calawa, T. C. Harman, K. W. Nill, “Tunable diode laser measurements of water vapor absorption line parameters,” Mol. Phys. 28, 653–664 (1974).
[CrossRef]

Oka, T.

S. M. Freund, G. Duxbury, M. Romheld, J. T. Tiedje, T. Oka, “Laser Stark spectroscopy in the 10μm region: the ν3 bands of CH3F,” J. Mol. Spectrosc. 52, 38–57 (1974).
[CrossRef]

Petersen, F. R.

F. R. Petersen, D. G. McDonald, J. D. Cupp, B. L. Danielson, “Accurate rotational constants, frequencies, and wavelengths from 12C16O2 lasers stabilized by saturated absorption,” in Laser Spectroscopy, R. G. Brewer, A. Mooradian, eds., Proceedings of an international conference on laser spectroscopy, Vail, Colorado, June 25–29, 1973 (Plenum, New York, 1974), pp. 555 – 569.

Romheld, M.

S. M. Freund, G. Duxbury, M. Romheld, J. T. Tiedje, T. Oka, “Laser Stark spectroscopy in the 10μm region: the ν3 bands of CH3F,” J. Mol. Spectrosc. 52, 38–57 (1974).
[CrossRef]

Shaw, J. H.

C. L. Lin, J. H. Shaw, “Measurements of ν2 fundamental bands of D2O,” 31st Symposium on Molecular Spectroscopy, Columbus, Ohio (1976), paper FC10.

Sheffield, R. L.

F. Keilmann, R. L. Sheffield, J. R. Leite, M. S. Feld, A. Javan, “Optical pumping and tunable laser spectroscopy of the ν2 band of D2O,” Appl. Phys. Lett. 26, 19–22 (1975).
[CrossRef]

Tiedje, J. T.

S. M. Freund, G. Duxbury, M. Romheld, J. T. Tiedje, T. Oka, “Laser Stark spectroscopy in the 10μm region: the ν3 bands of CH3F,” J. Mol. Spectrosc. 52, 38–57 (1974).
[CrossRef]

Appl. Phys. Lett. (1)

F. Keilmann, R. L. Sheffield, J. R. Leite, M. S. Feld, A. Javan, “Optical pumping and tunable laser spectroscopy of the ν2 band of D2O,” Appl. Phys. Lett. 26, 19–22 (1975).
[CrossRef]

J. Mol. Spectrosc. (1)

S. M. Freund, G. Duxbury, M. Romheld, J. T. Tiedje, T. Oka, “Laser Stark spectroscopy in the 10μm region: the ν3 bands of CH3F,” J. Mol. Spectrosc. 52, 38–57 (1974).
[CrossRef]

Mol. Phys. (1)

R. S. Eng, P. L. Kelley, A. R. Calawa, T. C. Harman, K. W. Nill, “Tunable diode laser measurements of water vapor absorption line parameters,” Mol. Phys. 28, 653–664 (1974).
[CrossRef]

Phys. Rev. Lett. (1)

E. D. Hinkley, C. Freed, “Direct observation of Lorentzian lineshape as limited by quantum noise in a laser above threshold,” Phys. Rev. Lett. 23, 277–280 (1969).
[CrossRef]

Other (3)

T. W. Meyer, “Line broadening and collision studies of CO2 using the technique of saturation spectroscopy,” Ph.D. Thesis, University of California, Livermore (1974).

C. L. Lin, J. H. Shaw, “Measurements of ν2 fundamental bands of D2O,” 31st Symposium on Molecular Spectroscopy, Columbus, Ohio (1976), paper FC10.

F. R. Petersen, D. G. McDonald, J. D. Cupp, B. L. Danielson, “Accurate rotational constants, frequencies, and wavelengths from 12C16O2 lasers stabilized by saturated absorption,” in Laser Spectroscopy, R. G. Brewer, A. Mooradian, eds., Proceedings of an international conference on laser spectroscopy, Vail, Colorado, June 25–29, 1973 (Plenum, New York, 1974), pp. 555 – 569.

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Figures (2)

Fig. 1
Fig. 1

Schematic diagram of diode-laser heterodyne spectrometer.

Fig. 2
Fig. 2

Chart recorder output: upper trace shows molecular absorption; lower trace shows frequency markers.

Tables (1)

Tables Icon

Table 1 D2O Absorption Frequencies

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