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References

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  1. L. Mertz, J. Phys. Rad. 19, 233 (1958).
    [CrossRef]
  2. H. A. Gebbie, C. F. Osborne, N. W. B. Stone, B. K. Taylor, Engineer 226, 630 (1968).
  3. J. Connes, P. Connes, J. P. Maillard, J. Phys. Rad. 28, C2-120 (1967).
  4. G. W. Chantry, H. M. Evans, J. Chamberlain, H. A. Gebbie, Infrared Phys. 9, 85 (1969).
    [CrossRef]
  5. J. Chamberlain, H. A. Gebbie, Nature 206, 602 (1965).
    [CrossRef]

1969 (1)

G. W. Chantry, H. M. Evans, J. Chamberlain, H. A. Gebbie, Infrared Phys. 9, 85 (1969).
[CrossRef]

1968 (1)

H. A. Gebbie, C. F. Osborne, N. W. B. Stone, B. K. Taylor, Engineer 226, 630 (1968).

1967 (1)

J. Connes, P. Connes, J. P. Maillard, J. Phys. Rad. 28, C2-120 (1967).

1965 (1)

J. Chamberlain, H. A. Gebbie, Nature 206, 602 (1965).
[CrossRef]

1958 (1)

L. Mertz, J. Phys. Rad. 19, 233 (1958).
[CrossRef]

Chamberlain, J.

G. W. Chantry, H. M. Evans, J. Chamberlain, H. A. Gebbie, Infrared Phys. 9, 85 (1969).
[CrossRef]

J. Chamberlain, H. A. Gebbie, Nature 206, 602 (1965).
[CrossRef]

Chantry, G. W.

G. W. Chantry, H. M. Evans, J. Chamberlain, H. A. Gebbie, Infrared Phys. 9, 85 (1969).
[CrossRef]

Connes, J.

J. Connes, P. Connes, J. P. Maillard, J. Phys. Rad. 28, C2-120 (1967).

Connes, P.

J. Connes, P. Connes, J. P. Maillard, J. Phys. Rad. 28, C2-120 (1967).

Evans, H. M.

G. W. Chantry, H. M. Evans, J. Chamberlain, H. A. Gebbie, Infrared Phys. 9, 85 (1969).
[CrossRef]

Gebbie, H. A.

G. W. Chantry, H. M. Evans, J. Chamberlain, H. A. Gebbie, Infrared Phys. 9, 85 (1969).
[CrossRef]

H. A. Gebbie, C. F. Osborne, N. W. B. Stone, B. K. Taylor, Engineer 226, 630 (1968).

J. Chamberlain, H. A. Gebbie, Nature 206, 602 (1965).
[CrossRef]

Maillard, J. P.

J. Connes, P. Connes, J. P. Maillard, J. Phys. Rad. 28, C2-120 (1967).

Mertz, L.

L. Mertz, J. Phys. Rad. 19, 233 (1958).
[CrossRef]

Osborne, C. F.

H. A. Gebbie, C. F. Osborne, N. W. B. Stone, B. K. Taylor, Engineer 226, 630 (1968).

Stone, N. W. B.

H. A. Gebbie, C. F. Osborne, N. W. B. Stone, B. K. Taylor, Engineer 226, 630 (1968).

Taylor, B. K.

H. A. Gebbie, C. F. Osborne, N. W. B. Stone, B. K. Taylor, Engineer 226, 630 (1968).

Engineer (1)

H. A. Gebbie, C. F. Osborne, N. W. B. Stone, B. K. Taylor, Engineer 226, 630 (1968).

Infrared Phys. (1)

G. W. Chantry, H. M. Evans, J. Chamberlain, H. A. Gebbie, Infrared Phys. 9, 85 (1969).
[CrossRef]

J. Phys. Rad. (2)

J. Connes, P. Connes, J. P. Maillard, J. Phys. Rad. 28, C2-120 (1967).

L. Mertz, J. Phys. Rad. 19, 233 (1958).
[CrossRef]

Nature (1)

J. Chamberlain, H. A. Gebbie, Nature 206, 602 (1965).
[CrossRef]

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Figures (2)

Fig. 1
Fig. 1

Simple unit for the provision of phase modulation in a submillimeter-wave interferometer. Typical amplitude: 0.002 in. (0.005 mm).

Fig. 2
Fig. 2

Amplitude-modulated and phase-modulated spectra (a) and their ratio (b) showing the wavenumber-dependent spectral characteristic imposed by the phase modulation.

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