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  1. J. B. West, R. S. Bradford, J. D. Eversole, and C. R. Jones, Rev. Sci. Instrum. 46, 164 (1975).
    [Crossref]
  2. S. Rosenwaks, R. E. Steele, and H. P. Broida, J. Chem. Phys. 63, 1963 (1975).
    [Crossref]
  3. W. L. Wiese, M. W. Smith, and B. M. Miles, Natl. Bur. Stand. Ref. Data Ser. 22II, 48 (1969).
  4. N. P. Penkin and L. N. Shabanova, Optics Spectrosc. (USSR) 18, 425 (1965).
  5. T. Yamashita, Sci. Light (Tokyo) 14, 28 (1965).
  6. S. Rosenwaks and H. P. Broida (unpublished).

1975 (2)

J. B. West, R. S. Bradford, J. D. Eversole, and C. R. Jones, Rev. Sci. Instrum. 46, 164 (1975).
[Crossref]

S. Rosenwaks, R. E. Steele, and H. P. Broida, J. Chem. Phys. 63, 1963 (1975).
[Crossref]

1969 (1)

W. L. Wiese, M. W. Smith, and B. M. Miles, Natl. Bur. Stand. Ref. Data Ser. 22II, 48 (1969).

1965 (2)

N. P. Penkin and L. N. Shabanova, Optics Spectrosc. (USSR) 18, 425 (1965).

T. Yamashita, Sci. Light (Tokyo) 14, 28 (1965).

Bradford, R. S.

J. B. West, R. S. Bradford, J. D. Eversole, and C. R. Jones, Rev. Sci. Instrum. 46, 164 (1975).
[Crossref]

Broida, H. P.

S. Rosenwaks, R. E. Steele, and H. P. Broida, J. Chem. Phys. 63, 1963 (1975).
[Crossref]

S. Rosenwaks and H. P. Broida (unpublished).

Eversole, J. D.

J. B. West, R. S. Bradford, J. D. Eversole, and C. R. Jones, Rev. Sci. Instrum. 46, 164 (1975).
[Crossref]

Jones, C. R.

J. B. West, R. S. Bradford, J. D. Eversole, and C. R. Jones, Rev. Sci. Instrum. 46, 164 (1975).
[Crossref]

Miles, B. M.

W. L. Wiese, M. W. Smith, and B. M. Miles, Natl. Bur. Stand. Ref. Data Ser. 22II, 48 (1969).

Penkin, N. P.

N. P. Penkin and L. N. Shabanova, Optics Spectrosc. (USSR) 18, 425 (1965).

Rosenwaks, S.

S. Rosenwaks, R. E. Steele, and H. P. Broida, J. Chem. Phys. 63, 1963 (1975).
[Crossref]

S. Rosenwaks and H. P. Broida (unpublished).

Shabanova, L. N.

N. P. Penkin and L. N. Shabanova, Optics Spectrosc. (USSR) 18, 425 (1965).

Smith, M. W.

W. L. Wiese, M. W. Smith, and B. M. Miles, Natl. Bur. Stand. Ref. Data Ser. 22II, 48 (1969).

Steele, R. E.

S. Rosenwaks, R. E. Steele, and H. P. Broida, J. Chem. Phys. 63, 1963 (1975).
[Crossref]

West, J. B.

J. B. West, R. S. Bradford, J. D. Eversole, and C. R. Jones, Rev. Sci. Instrum. 46, 164 (1975).
[Crossref]

Wiese, W. L.

W. L. Wiese, M. W. Smith, and B. M. Miles, Natl. Bur. Stand. Ref. Data Ser. 22II, 48 (1969).

Yamashita, T.

T. Yamashita, Sci. Light (Tokyo) 14, 28 (1965).

J. Chem. Phys. (1)

S. Rosenwaks, R. E. Steele, and H. P. Broida, J. Chem. Phys. 63, 1963 (1975).
[Crossref]

Natl. Bur. Stand. Ref. Data Ser. (1)

W. L. Wiese, M. W. Smith, and B. M. Miles, Natl. Bur. Stand. Ref. Data Ser. 22II, 48 (1969).

Optics Spectrosc. (USSR) (1)

N. P. Penkin and L. N. Shabanova, Optics Spectrosc. (USSR) 18, 425 (1965).

Rev. Sci. Instrum. (1)

J. B. West, R. S. Bradford, J. D. Eversole, and C. R. Jones, Rev. Sci. Instrum. 46, 164 (1975).
[Crossref]

Sci. Light (Tokyo) (1)

T. Yamashita, Sci. Light (Tokyo) 14, 28 (1965).

Other (1)

S. Rosenwaks and H. P. Broida (unpublished).

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Figures (2)

FIG. 1
FIG. 1

Emission spectrum from Al +NF3 at 10 torr. Resolution is 0.1 nm in the main spectrum and 0.4 nm in the insert. Al nd2D→3p2P doublets are marked for 6 ≤ n ≤ 15. The vertical dotted line at the right end of the spectrum marks the series limit. The intense band around 227.5 nm is the Δν = 0 sequence of the A 1Π–X 1+ transition of AlF.

FIG. 2
FIG. 2

Relative populations of the nd2D states of Al in (1) Al + NF3 at 25 torr and (2) Al + microwave discharged N2 at 1.5 torr as a function of excited state energy. Error bars indicate the estimated uncertainty in the measurements.

Equations (4)

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Al + NF 3 AlF + NF 2 ,
Al + NF 2 AlF + NF ,
Al + NF AlF + N ,
N + NF N 2 + F .