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References

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  1. G. Koppelmann, K. Krebs, Optik 18, 349 (1961).
  2. K. M. Baird, J. Opt. Soc. Am. 44, 11 (1954).
    [CrossRef]
  3. F. Bayer-Helms, Z. Angew. Physik 15, 330 (1963).
  4. W. G. Schweitzer, J. Opt. Soc. Am. 53, 1055 (1963).
    [CrossRef]
  5. A. D. White, IEEE Trans. QE-1, 349 (1965).
  6. W. Kinder, Optik 24, 323 (1966–67).

1965

A. D. White, IEEE Trans. QE-1, 349 (1965).

1963

F. Bayer-Helms, Z. Angew. Physik 15, 330 (1963).

W. G. Schweitzer, J. Opt. Soc. Am. 53, 1055 (1963).
[CrossRef]

1961

G. Koppelmann, K. Krebs, Optik 18, 349 (1961).

1954

Baird, K. M.

Bayer-Helms, F.

F. Bayer-Helms, Z. Angew. Physik 15, 330 (1963).

Kinder, W.

W. Kinder, Optik 24, 323 (1966–67).

Koppelmann, G.

G. Koppelmann, K. Krebs, Optik 18, 349 (1961).

Krebs, K.

G. Koppelmann, K. Krebs, Optik 18, 349 (1961).

Schweitzer, W. G.

White, A. D.

A. D. White, IEEE Trans. QE-1, 349 (1965).

IEEE Trans.

A. D. White, IEEE Trans. QE-1, 349 (1965).

J. Opt. Soc. Am.

Optik

G. Koppelmann, K. Krebs, Optik 18, 349 (1961).

W. Kinder, Optik 24, 323 (1966–67).

Z. Angew. Physik

F. Bayer-Helms, Z. Angew. Physik 15, 330 (1963).

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Figures (2)

Fig. 1
Fig. 1

(a) Split line with position of the aperture. The size of the splitting, i.e., the sensitivity, is adjusted by the magnetic field. (b) Chronological sequence of the signal when adjustment is carried out according to (a).

Fig. 2
Fig. 2

Schematic diagram of the setup. 1, Fabry-Perot interferometer; 2, interference refractometer; 3, piston; 4, Hg lamp; 5, magnet; 6, interference filter for λ = 5461 Å; 7, objective; 8, quarter-wave plate; 9, sheet polarizers; 10, aperture; 11, photomultiplier tube with amplifier and phase discriminator; 12, scanning stop. The unit for evaluating and filling with gas is not shown here.

Equations (1)

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z = 2 d × σ × ( n - 1 ) F × x / V 1 + F × x / V ,

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