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  1. J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
    [CrossRef]
  2. J. Waters, JPL Report 750–156, Microwave Limb Sounder (MLS), TR/Instrument Description (1981).
  3. P. B. Hays, Appl. Opt. 21, 1136 (1982).
    [CrossRef] [PubMed]
  4. D. J. McCleese, J. S. Margolis, Appl. Opt. 22, 2528 (1983).
    [CrossRef] [PubMed]
  5. J. J. Barnett, Q. J. R. Meteorol. Soc. 100, 505 (1974).
    [CrossRef]
  6. A. J. Crane, Q. J. R. Meteorol. Soc. 105, 509 (1979).
    [CrossRef]
  7. F. W. Taylor, J. T. Houghton, G. D. Peskett, C. D. Rodgers, E. J. Williamson, Appl. Opt. 11, 135 (1972).
    [CrossRef] [PubMed]
  8. N. A. Scott, J. Quant. Spectrosc. Radiat. Transfer 14, 691 (1974).
    [CrossRef]
  9. L. S. Rothman, Appl. Opt. 20, 791 (1981).
    [CrossRef] [PubMed]

1983 (1)

1982 (1)

1981 (1)

1980 (1)

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

1979 (1)

A. J. Crane, Q. J. R. Meteorol. Soc. 105, 509 (1979).
[CrossRef]

1974 (2)

N. A. Scott, J. Quant. Spectrosc. Radiat. Transfer 14, 691 (1974).
[CrossRef]

J. J. Barnett, Q. J. R. Meteorol. Soc. 100, 505 (1974).
[CrossRef]

1972 (1)

Barnett, J. J.

J. J. Barnett, Q. J. R. Meteorol. Soc. 100, 505 (1974).
[CrossRef]

Crane, A. J.

A. J. Crane, Q. J. R. Meteorol. Soc. 105, 509 (1979).
[CrossRef]

Drummond, J. R.

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

Hays, P. B.

Houghton, J. T.

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

F. W. Taylor, J. T. Houghton, G. D. Peskett, C. D. Rodgers, E. J. Williamson, Appl. Opt. 11, 135 (1972).
[CrossRef] [PubMed]

Margolis, J. S.

McCleese, D. J.

Peskett, G. D.

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

F. W. Taylor, J. T. Houghton, G. D. Peskett, C. D. Rodgers, E. J. Williamson, Appl. Opt. 11, 135 (1972).
[CrossRef] [PubMed]

Rodgers, C. D.

Rogers, C. D.

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

Rothman, L. S.

Scott, N. A.

N. A. Scott, J. Quant. Spectrosc. Radiat. Transfer 14, 691 (1974).
[CrossRef]

Taylor, F. W.

Wale, M. J.

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

Waters, J.

J. Waters, JPL Report 750–156, Microwave Limb Sounder (MLS), TR/Instrument Description (1981).

Whitney, J.

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

Williamson, E. J.

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

F. W. Taylor, J. T. Houghton, G. D. Peskett, C. D. Rodgers, E. J. Williamson, Appl. Opt. 11, 135 (1972).
[CrossRef] [PubMed]

Appl. Opt. (4)

J. Quant. Spectrosc. Radiat. Transfer (1)

N. A. Scott, J. Quant. Spectrosc. Radiat. Transfer 14, 691 (1974).
[CrossRef]

Philos. Trans. R. Soc. London Ser. A (1)

J. R. Drummond, J. T. Houghton, G. D. Peskett, C. D. Rogers, M. J. Wale, J. Whitney, E. J. Williamson, Philos. Trans. R. Soc. London Ser. A 296, 219 (1980).
[CrossRef]

Q. J. R. Meteorol. Soc. (2)

J. J. Barnett, Q. J. R. Meteorol. Soc. 100, 505 (1974).
[CrossRef]

A. J. Crane, Q. J. R. Meteorol. Soc. 105, 509 (1979).
[CrossRef]

Other (1)

J. Waters, JPL Report 750–156, Microwave Limb Sounder (MLS), TR/Instrument Description (1981).

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Figures (2)

Fig. 1
Fig. 1

Schematic of the laboratory apparatus for making Doppler shift measurements by gas correlation spectroscopy. The locations of the reference (PMC) and sample (simulated atmopshere) gas cells in the optical train are reversed to minimize the effects of mechanical sources of spurious modulation of the radiation.

Fig. 2
Fig. 2

Responsivity of the laboratory gas correlation spectrometer (using N2O in the 1250–1310-cm−1 interval) to Doppler shifts corresponding to 300–360 m/sec (δν = 1.3 × 10−3 to 1.6 × 10−3 cm−1). The experimental results are shown with 2 σ error bars. The theoretical responsivity of the sensor for the laboratory conditions is also shown.

Equations (1)

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Δ ω R = 2 v c cos θ ω 0 ,

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