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  1. D. H. Thurnau, J. Opt. Soc. Am. 46, 346 (1956).
    [Crossref]
  2. J. Hammann, Z. Angew. Phys. 10, 187 (1958).
  3. F. S. Johnson, K. Watanabe, and R. Tousey, J. Opt. Soc. Am. 41, 702 (1951).
    [Crossref]
  4. K. Watanabe and E. C. Y. Inn, J. Opt. Soc. Am. 43, 32 (1953).
    [Crossref]
  5. J. A. R. Samson, J. Opt. Soc. Am. 54, 6 (1964).
    [Crossref]
  6. R. A. Knapp and A. M. Smith, Appl. Opt. 3, 637 (1964).
    [Crossref]
  7. J. Vasseur and M. Cantin, in Proceedings of XI Colloque Int’l de Spectroscopie, Belgrade (1963) (Publ. GAMS, Paris, 1964), p. 491.
  8. E. C. Bruner, J. Opt. Soc. Am. 59, 204 (1969).
    [Crossref]
  9. J. A. R. Samson, Techniques of Vacuum Ultraviolet Spectroscopy (Wiley, New York, 1967), see pp. 215 and 165.
  10. H. Harrison, R. I. Schoen, R. B. Cairns, and K. E. Schubert, J. Chem. Phys. 50, 3930 (1969).
    [Crossref]
  11. J. A. R. Samson and G. N. Haddad, J. Opt. Soc. Am. 64, 47 (1974).
    [Crossref]
  12. A. J. Meyerott, P. C. Fisher, and D. T. Roethig, Rev. Sci. Instr. 35, 669 (1964).
    [Crossref]
  13. L. E. Bailey, J. Appl. Phys. 34, 3008 (1963).
    [Crossref]
  14. E. Krokowski, Naturwiss. 45, 509 (1958).
    [Crossref]

1974 (1)

1969 (2)

E. C. Bruner, J. Opt. Soc. Am. 59, 204 (1969).
[Crossref]

H. Harrison, R. I. Schoen, R. B. Cairns, and K. E. Schubert, J. Chem. Phys. 50, 3930 (1969).
[Crossref]

1964 (3)

1963 (1)

L. E. Bailey, J. Appl. Phys. 34, 3008 (1963).
[Crossref]

1958 (2)

E. Krokowski, Naturwiss. 45, 509 (1958).
[Crossref]

J. Hammann, Z. Angew. Phys. 10, 187 (1958).

1956 (1)

1953 (1)

1951 (1)

Bailey, L. E.

L. E. Bailey, J. Appl. Phys. 34, 3008 (1963).
[Crossref]

Bruner, E. C.

Cairns, R. B.

H. Harrison, R. I. Schoen, R. B. Cairns, and K. E. Schubert, J. Chem. Phys. 50, 3930 (1969).
[Crossref]

Cantin, M.

J. Vasseur and M. Cantin, in Proceedings of XI Colloque Int’l de Spectroscopie, Belgrade (1963) (Publ. GAMS, Paris, 1964), p. 491.

Fisher, P. C.

A. J. Meyerott, P. C. Fisher, and D. T. Roethig, Rev. Sci. Instr. 35, 669 (1964).
[Crossref]

Haddad, G. N.

Hammann, J.

J. Hammann, Z. Angew. Phys. 10, 187 (1958).

Harrison, H.

H. Harrison, R. I. Schoen, R. B. Cairns, and K. E. Schubert, J. Chem. Phys. 50, 3930 (1969).
[Crossref]

Inn, E. C. Y.

Johnson, F. S.

Knapp, R. A.

Krokowski, E.

E. Krokowski, Naturwiss. 45, 509 (1958).
[Crossref]

Meyerott, A. J.

A. J. Meyerott, P. C. Fisher, and D. T. Roethig, Rev. Sci. Instr. 35, 669 (1964).
[Crossref]

Roethig, D. T.

A. J. Meyerott, P. C. Fisher, and D. T. Roethig, Rev. Sci. Instr. 35, 669 (1964).
[Crossref]

Samson, J. A. R.

J. A. R. Samson and G. N. Haddad, J. Opt. Soc. Am. 64, 47 (1974).
[Crossref]

J. A. R. Samson, J. Opt. Soc. Am. 54, 6 (1964).
[Crossref]

J. A. R. Samson, Techniques of Vacuum Ultraviolet Spectroscopy (Wiley, New York, 1967), see pp. 215 and 165.

Schoen, R. I.

H. Harrison, R. I. Schoen, R. B. Cairns, and K. E. Schubert, J. Chem. Phys. 50, 3930 (1969).
[Crossref]

Schubert, K. E.

H. Harrison, R. I. Schoen, R. B. Cairns, and K. E. Schubert, J. Chem. Phys. 50, 3930 (1969).
[Crossref]

Smith, A. M.

Thurnau, D. H.

Tousey, R.

Vasseur, J.

J. Vasseur and M. Cantin, in Proceedings of XI Colloque Int’l de Spectroscopie, Belgrade (1963) (Publ. GAMS, Paris, 1964), p. 491.

Watanabe, K.

Appl. Opt. (1)

J. Appl. Phys. (1)

L. E. Bailey, J. Appl. Phys. 34, 3008 (1963).
[Crossref]

J. Chem. Phys. (1)

H. Harrison, R. I. Schoen, R. B. Cairns, and K. E. Schubert, J. Chem. Phys. 50, 3930 (1969).
[Crossref]

J. Opt. Soc. Am. (6)

Naturwiss. (1)

E. Krokowski, Naturwiss. 45, 509 (1958).
[Crossref]

Rev. Sci. Instr. (1)

A. J. Meyerott, P. C. Fisher, and D. T. Roethig, Rev. Sci. Instr. 35, 669 (1964).
[Crossref]

Z. Angew. Phys. (1)

J. Hammann, Z. Angew. Phys. 10, 187 (1958).

Other (2)

J. A. R. Samson, Techniques of Vacuum Ultraviolet Spectroscopy (Wiley, New York, 1967), see pp. 215 and 165.

J. Vasseur and M. Cantin, in Proceedings of XI Colloque Int’l de Spectroscopie, Belgrade (1963) (Publ. GAMS, Paris, 1964), p. 491.

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Figures (1)

Fig. 1
Fig. 1

Relative quantum efficiency of sodium salicylate in the wavelength range 100–600 Å. The experimental points represent data taken on the same salicylate coating as a function of time after preparation. □ 1 h; ○ 48 h; Δ 60 h ; ● 80 h; × 120 h.