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References

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  1. G. L. Rogers, Nature 177, 613 (1956);J. Atmospheric Terrest. Phys. 10, 332 (1957);J. Atmospheric Terrest. Phys. 11, 51 (1957).
    [Crossref]
  2. E. N. Leith and J. Upatnieks, J. Opt. Soc. Am. 53, 1377 (1963).
    [Crossref]
  3. R. Barer, Nature 167, 642 (1951).
    [Crossref] [PubMed]
  4. R. E. Brooks, L. O. Heflinger, R. F. Wuerker, and R. A. Briones, Appl. Phys. Letters 7, 92 (1965).
    [Crossref]

1965 (1)

R. E. Brooks, L. O. Heflinger, R. F. Wuerker, and R. A. Briones, Appl. Phys. Letters 7, 92 (1965).
[Crossref]

1963 (1)

1956 (1)

G. L. Rogers, Nature 177, 613 (1956);J. Atmospheric Terrest. Phys. 10, 332 (1957);J. Atmospheric Terrest. Phys. 11, 51 (1957).
[Crossref]

1951 (1)

R. Barer, Nature 167, 642 (1951).
[Crossref] [PubMed]

Barer, R.

R. Barer, Nature 167, 642 (1951).
[Crossref] [PubMed]

Briones, R. A.

R. E. Brooks, L. O. Heflinger, R. F. Wuerker, and R. A. Briones, Appl. Phys. Letters 7, 92 (1965).
[Crossref]

Brooks, R. E.

R. E. Brooks, L. O. Heflinger, R. F. Wuerker, and R. A. Briones, Appl. Phys. Letters 7, 92 (1965).
[Crossref]

Heflinger, L. O.

R. E. Brooks, L. O. Heflinger, R. F. Wuerker, and R. A. Briones, Appl. Phys. Letters 7, 92 (1965).
[Crossref]

Leith, E. N.

Rogers, G. L.

G. L. Rogers, Nature 177, 613 (1956);J. Atmospheric Terrest. Phys. 10, 332 (1957);J. Atmospheric Terrest. Phys. 11, 51 (1957).
[Crossref]

Upatnieks, J.

Wuerker, R. F.

R. E. Brooks, L. O. Heflinger, R. F. Wuerker, and R. A. Briones, Appl. Phys. Letters 7, 92 (1965).
[Crossref]

Appl. Phys. Letters (1)

R. E. Brooks, L. O. Heflinger, R. F. Wuerker, and R. A. Briones, Appl. Phys. Letters 7, 92 (1965).
[Crossref]

J. Opt. Soc. Am. (1)

Nature (2)

R. Barer, Nature 167, 642 (1951).
[Crossref] [PubMed]

G. L. Rogers, Nature 177, 613 (1956);J. Atmospheric Terrest. Phys. 10, 332 (1957);J. Atmospheric Terrest. Phys. 11, 51 (1957).
[Crossref]

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Figures (1)

F. 1
F. 1

Reconstructed image of a block of glass under internal strains, obtained from a hologram taken with a gas laser. Upper portion gives parallel polarizer fringes; the lower portion gives crossed polarizer fringes, since the polarization of the reference beam was rotated 90° by a cellophane strip across this part of the reference beam. Disturbances from the cellophane can be seen, and also normal phase-contrast effects in the strained glass. The latter are sharper than the polarization fringes.