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  1. E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
    [CrossRef]
  2. R. M. Goody, Atmospheric Radiation, I. Theoretical Basis (Oxford at the Clarendon Press, London, 1964), Chap. 5.
  3. K. O. White, W. R. Watkins, S. A. Schleusener, Appl. Opt. 14, 16 (1975).
    [CrossRef] [PubMed]
  4. J. U. White, J. Opt. Soc. Am. 32, 285 (1942).
    [CrossRef]
  5. G. L. Trusty, “Absorption Measurements of the 10.4 Micron Region Using a CO2 Laser and a Spectrophone,” AFAL TR72-413 (Electro Science Laboratory, Department of Electrical Engineering, Ohio State Univ., 1973).
  6. Sanders Associated, Inc., 95 Canal St., Nashua, New Hampshire.
  7. R. R. Patty, E. R. Manring, J. A. Gardner, Appl. Opt. 7, 2241 (1968).
    [CrossRef] [PubMed]
  8. R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).
  9. P. S. Gillespie, R. L. Armstrong, K. O. White, “The Spectral Characteristics and Atmospheric CO2 Absorption of the HO+3:YLF Laser at 2.05μm,” US Army Electronics Command Report ECOM-5583 (December1975).
  10. J. O. Hirschfelder, C. F. Curtis, R. B. Bird, Molecular Theory of Gases and Liquids (Wiley, New York, 1954), Appendix Table I-A.
  11. D. E. Burch, E. B. Singleton, D. Williams, Appl. Opt. 1, 359 (1962).
    [CrossRef]

1975

1971

E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
[CrossRef]

1968

1962

1942

Armstrong, R. L.

P. S. Gillespie, R. L. Armstrong, K. O. White, “The Spectral Characteristics and Atmospheric CO2 Absorption of the HO+3:YLF Laser at 2.05μm,” US Army Electronics Command Report ECOM-5583 (December1975).

Benedict, W. S.

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

Bird, R. B.

J. O. Hirschfelder, C. F. Curtis, R. B. Bird, Molecular Theory of Gases and Liquids (Wiley, New York, 1954), Appendix Table I-A.

Burch, D. E.

D. E. Burch, E. B. Singleton, D. Williams, Appl. Opt. 1, 359 (1962).
[CrossRef]

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

Calfee, R. F.

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

Chicklis, E. P.

E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
[CrossRef]

Clough, S. A.

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

Curtis, C. F.

J. O. Hirschfelder, C. F. Curtis, R. B. Bird, Molecular Theory of Gases and Liquids (Wiley, New York, 1954), Appendix Table I-A.

Foweiller, R. C.

E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
[CrossRef]

Fox, K.

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

Gabbe, D. R.

E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
[CrossRef]

Gardner, J. A.

Garing, J. S.

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

Gillespie, P. S.

P. S. Gillespie, R. L. Armstrong, K. O. White, “The Spectral Characteristics and Atmospheric CO2 Absorption of the HO+3:YLF Laser at 2.05μm,” US Army Electronics Command Report ECOM-5583 (December1975).

Goody, R. M.

R. M. Goody, Atmospheric Radiation, I. Theoretical Basis (Oxford at the Clarendon Press, London, 1964), Chap. 5.

Hirschfelder, J. O.

J. O. Hirschfelder, C. F. Curtis, R. B. Bird, Molecular Theory of Gases and Liquids (Wiley, New York, 1954), Appendix Table I-A.

Jenssen, H. P.

E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
[CrossRef]

Linz, A.

E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
[CrossRef]

Manring, E. R.

McClatchey, R. A.

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

Naiman, C. S.

E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
[CrossRef]

Patty, R. R.

Rothman, L. S.

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

Schleusener, S. A.

Singleton, E. B.

Trusty, G. L.

G. L. Trusty, “Absorption Measurements of the 10.4 Micron Region Using a CO2 Laser and a Spectrophone,” AFAL TR72-413 (Electro Science Laboratory, Department of Electrical Engineering, Ohio State Univ., 1973).

Watkins, W. R.

White, J. U.

White, K. O.

K. O. White, W. R. Watkins, S. A. Schleusener, Appl. Opt. 14, 16 (1975).
[CrossRef] [PubMed]

P. S. Gillespie, R. L. Armstrong, K. O. White, “The Spectral Characteristics and Atmospheric CO2 Absorption of the HO+3:YLF Laser at 2.05μm,” US Army Electronics Command Report ECOM-5583 (December1975).

Williams, D.

Appl. Opt.

Appl. Phys. Lett.

E. P. Chicklis, C. S. Naiman, R. C. Foweiller, D. R. Gabbe, H. P. Jenssen, A. Linz, Appl. Phys. Lett. 19, 119 (1971).
[CrossRef]

J. Opt. Soc. Am.

Other

R. M. Goody, Atmospheric Radiation, I. Theoretical Basis (Oxford at the Clarendon Press, London, 1964), Chap. 5.

G. L. Trusty, “Absorption Measurements of the 10.4 Micron Region Using a CO2 Laser and a Spectrophone,” AFAL TR72-413 (Electro Science Laboratory, Department of Electrical Engineering, Ohio State Univ., 1973).

Sanders Associated, Inc., 95 Canal St., Nashua, New Hampshire.

R. A. McClatchey, W. S. Benedict, S. A. Clough, D. E. Burch, R. F. Calfee, K. Fox, L. S. Rothman, J. S. Garing, “AFCRL Atmospheric Absorption Line Parameters Compilation,” AFCRL-TR-0096 (Optical Physics Laboratory, Air Force Cambridge Research Laboratories, 1973).

P. S. Gillespie, R. L. Armstrong, K. O. White, “The Spectral Characteristics and Atmospheric CO2 Absorption of the HO+3:YLF Laser at 2.05μm,” US Army Electronics Command Report ECOM-5583 (December1975).

J. O. Hirschfelder, C. F. Curtis, R. B. Bird, Molecular Theory of Gases and Liquids (Wiley, New York, 1954), Appendix Table I-A.

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Figures (1)

Fig. 1
Fig. 1

Holmium laser spectral output: (a) doublet—left response 2.0516 μm, right response 2.0505 μm; (b) single output, taken 1 min later at 2.0516 μm.

Tables (1)

Tables Icon

Table I Absorption and Self-Broadening Coefficients

Equations (2)

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B = ( P - 1 ) ( P + 381 P / ln T ) - 1 ,
P = P CO 2 / P tot , P CO 2

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