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References

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  1. A. O’Keefe, D. A. G. Deacon, “Cavity Ring-Down Optical Spectrometer for Absorption Measurements Using Pulsed Laser Sources,” Rev. Sci. Instrum. (1988) (in press).
    [CrossRef]
  2. D. Z. Anderson, J. C. Frisch, C. S. Masser, “Mirror Reflectometer Based on Optical Cavity Decay Time,” Appl. Opt. 23, 1238 (1984).
    [CrossRef] [PubMed]
  3. S. A. Clough, F. X. Kneizys, E. P. Shettle, G. P. Anderson, “Atmospheric Radiance and Transmittance: fascod2,” presented at Sixth Conference on Atmospheric Radiation, Williamsburg, VA (May 1986).
  4. J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
    [CrossRef]
  5. N. J. Dovichi, D. S. Moore, R. A. Keller, “Use of the Optogalvanic Effect and the Uranium Atlas for Wavelength Calibration of Pulsed Lasers,” Appl. Opt. 21, 1468 (1982).
    [CrossRef] [PubMed]

1984 (1)

1982 (1)

1979 (1)

J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
[CrossRef]

Anderson, D. Z.

Anderson, G. P.

S. A. Clough, F. X. Kneizys, E. P. Shettle, G. P. Anderson, “Atmospheric Radiance and Transmittance: fascod2,” presented at Sixth Conference on Atmospheric Radiation, Williamsburg, VA (May 1986).

Camey-Peyret, C.

J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
[CrossRef]

Chen, D-W.

J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
[CrossRef]

Clough, S. A.

S. A. Clough, F. X. Kneizys, E. P. Shettle, G. P. Anderson, “Atmospheric Radiance and Transmittance: fascod2,” presented at Sixth Conference on Atmospheric Radiation, Williamsburg, VA (May 1986).

Deacon, D. A. G.

A. O’Keefe, D. A. G. Deacon, “Cavity Ring-Down Optical Spectrometer for Absorption Measurements Using Pulsed Laser Sources,” Rev. Sci. Instrum. (1988) (in press).
[CrossRef]

Dovichi, N. J.

Flaud, J. M.

J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
[CrossRef]

Frisch, J. C.

Hoh, Y-S.

J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
[CrossRef]

Keller, R. A.

Kneizys, F. X.

S. A. Clough, F. X. Kneizys, E. P. Shettle, G. P. Anderson, “Atmospheric Radiance and Transmittance: fascod2,” presented at Sixth Conference on Atmospheric Radiation, Williamsburg, VA (May 1986).

Maillard, J. P.

J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
[CrossRef]

Masser, C. S.

Moore, D. S.

O’Keefe, A.

A. O’Keefe, D. A. G. Deacon, “Cavity Ring-Down Optical Spectrometer for Absorption Measurements Using Pulsed Laser Sources,” Rev. Sci. Instrum. (1988) (in press).
[CrossRef]

Rao, K. N.

J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
[CrossRef]

Shettle, E. P.

S. A. Clough, F. X. Kneizys, E. P. Shettle, G. P. Anderson, “Atmospheric Radiance and Transmittance: fascod2,” presented at Sixth Conference on Atmospheric Radiation, Williamsburg, VA (May 1986).

Appl. Opt. (2)

J. Mol. Spectrosc. (1)

J. M. Flaud, C. Camey-Peyret, K. N. Rao, D-W. Chen, Y-S. Hoh, J. P. Maillard, “Spectrum of Water Vapor between 8050 and 9370 cm−1,” J. Mol. Spectrosc. 75, 339 (1979).
[CrossRef]

Other (2)

A. O’Keefe, D. A. G. Deacon, “Cavity Ring-Down Optical Spectrometer for Absorption Measurements Using Pulsed Laser Sources,” Rev. Sci. Instrum. (1988) (in press).
[CrossRef]

S. A. Clough, F. X. Kneizys, E. P. Shettle, G. P. Anderson, “Atmospheric Radiance and Transmittance: fascod2,” presented at Sixth Conference on Atmospheric Radiation, Williamsburg, VA (May 1986).

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Figures (2)

Fig. 1
Fig. 1

Schematic of lossmeter apparatus: L, mode match lenses; F, spectral filter; P, turning prisms; M1,M2, lossmeter cavity mirrors.

Fig. 2
Fig. 2

(a) Lossmeter absorption spectrum for water vapor near 1.1 μm. (b) Calculated absorption spectrum generated with the Air Force Geophysical Laboratory atmospheric propagation computer model fascod2. The atmospheric conditions closely resemble the laboratory environment. Wavelengths are for vacuum. The feature highlighted with an arrow in the lossmeter scan is missing in the fascod2 spectrum as discussed in the test.

Equations (1)

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Γ = 1 - exp ( - 2 l / c τ q ) ~ - 2 l / c τ q .

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