Abstract

Recent measurements of the Zeeman effect in Er i have resulted in a consistent set of Zeeman data, in excellent agreement with theory for the 4f126s2 and 4f115d6s2 electron configurations of Er i. The measured value of g = 1.166±0.003 for the 3H6 level of the 4f126s2 electron configuration reduces the possibility of that value differing from the theoretically predicted value or the value measured by atomic-beam methods.

© 1969 Optical Society of America

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References

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    [Crossref]
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    [Crossref]
  6. L. C. Marquet and W. E. Behring, J. Opt. Soc. Am. 55, 576 (1965).
    [Crossref]
  7. N. Spector, J. Opt. Soc. Am. 55, 576 (1965).
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    [Crossref]
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    [Crossref]
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    [Crossref]
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    [Crossref]
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    [Crossref]
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    [Crossref]

1968 (1)

K. Heilig and O. Kircher, Z. Physik 212, 243 (1968).
[Crossref]

1966 (3)

1965 (3)

1963 (2)

J. G. Conway and B. G. Wybourne, Phys. Rev. 130, 2325 (1963).
[Crossref]

Z. B. Goldschmidt, J. Opt. Soc. Am. 53, 594 (1963).
[Crossref]

1961 (1)

A. Y. Cabezas, I. Lindgren, and R. Marrus, Phys. Rev. 122, 1796 (1961).
[Crossref]

1959 (1)

1958 (1)

1956 (1)

1947 (1)

G. Breit, Phys. Rev. 72, 984 (1947); J. Schwinger, Phys. Rev. 73, 416 (1948); J. R. McNally, Phys. Rev. 73, 1130 (1948); J. R. McNally, in Handbook of Physics, E. U. Condon and H. Odishaw, Eds. (McGraw–Hill Book Co., New York, 1967), p. 7–47.
[Crossref]

Behring, W. E.

Breit, G.

G. Breit, Phys. Rev. 72, 984 (1947); J. Schwinger, Phys. Rev. 73, 416 (1948); J. R. McNally, Phys. Rev. 73, 1130 (1948); J. R. McNally, in Handbook of Physics, E. U. Condon and H. Odishaw, Eds. (McGraw–Hill Book Co., New York, 1967), p. 7–47.
[Crossref]

Cabezas, A. Y.

A. Y. Cabezas, I. Lindgren, and R. Marrus, Phys. Rev. 122, 1796 (1961).
[Crossref]

Conway, J. G.

J. G. Conway and B. G. Wybourne, Phys. Rev. 130, 2325 (1963).
[Crossref]

Davis, S. P.

Gatterer, A.

A. Gatterer and J. Junkes, Spektren der Seltnen Erden (Citta del Vaticano, Rome, 1945).

Goldschmidt, Z. B.

Heilig, K.

K. Heilig and O. Kircher, Z. Physik 212, 243 (1968).
[Crossref]

Junkes, J.

A. Gatterer and J. Junkes, Spektren der Seltnen Erden (Citta del Vaticano, Rome, 1945).

Kircher, O.

K. Heilig and O. Kircher, Z. Physik 212, 243 (1968).
[Crossref]

Lindgren, I.

A. Y. Cabezas, I. Lindgren, and R. Marrus, Phys. Rev. 122, 1796 (1961).
[Crossref]

Lindner, J. W.

Marquet, L. C.

L. C. Marquet and S. P. Davis, J. Opt. Soc. Am. 55, 471 (1965).
[Crossref]

L. C. Marquet and W. E. Behring, J. Opt. Soc. Am. 55, 576 (1965).
[Crossref]

L. C. Marquet, The Atomic Spectra of Er i and Er ii (thesis, University of California, Berkeley, 1964).

Marrus, R.

A. Y. Cabezas, I. Lindgren, and R. Marrus, Phys. Rev. 122, 1796 (1961).
[Crossref]

McNally, J. R.

Racah, G.

Spector, N.

Toaff, S.

Vander Sluis, K. L.

Wybourne, B. G.

J. G. Conway and B. G. Wybourne, Phys. Rev. 130, 2325 (1963).
[Crossref]

B. G. Wybourne, Spectroscopic Properties of Rare Earths (John Wiley & Sons, Inc., New York, 1965).

J. Opt. Soc. Am. (10)

Phys. Rev. (3)

A. Y. Cabezas, I. Lindgren, and R. Marrus, Phys. Rev. 122, 1796 (1961).
[Crossref]

J. G. Conway and B. G. Wybourne, Phys. Rev. 130, 2325 (1963).
[Crossref]

G. Breit, Phys. Rev. 72, 984 (1947); J. Schwinger, Phys. Rev. 73, 416 (1948); J. R. McNally, Phys. Rev. 73, 1130 (1948); J. R. McNally, in Handbook of Physics, E. U. Condon and H. Odishaw, Eds. (McGraw–Hill Book Co., New York, 1967), p. 7–47.
[Crossref]

Z. Physik (1)

K. Heilig and O. Kircher, Z. Physik 212, 243 (1968).
[Crossref]

Other (3)

A. Gatterer and J. Junkes, Spektren der Seltnen Erden (Citta del Vaticano, Rome, 1945).

L. C. Marquet, The Atomic Spectra of Er i and Er ii (thesis, University of California, Berkeley, 1964).

B. G. Wybourne, Spectroscopic Properties of Rare Earths (John Wiley & Sons, Inc., New York, 1965).

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Tables (4)

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Table I Zeeman results in Er i.

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Table II Er i low even-parity levels (4f126s2).

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Table III Er i low odd-parity levels (4f115d6s2).

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Table IV Er i upper levels of even and odd parity.

Equations (2)

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m λ = A + B x + C x 2 ,
g ( S 2 1 2 ) = 2.0023 g ( P 2 3 2 ) = 1.3341 g ( P 2 1 2 ) = 0.6659 ,