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References

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  1. R. W. Meier, J. Opt. Soc. Am. 55, 987 (1965).
    [CrossRef]
  2. S. Lowenthal, E. Leiba, M. Lucas, A. Werts, C. R. Acad. Sci. Ser. B 226, 1363 (1968).
  3. Jay S. Chivian, R. N. Claytor, D. D. Eden, Appl. Phys. Lett. 15, 123 (1969).
    [CrossRef]
  4. T. Izawa, M. Kamiyama, Appl. Phys. Lett. 15, 201 (1969).
    [CrossRef]
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    [CrossRef]
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    [CrossRef]
  7. Jay S. Chivian, R. N. Claytor, D. D. Eden, R. B. Hemphill, Appl. Opt. 11, 2649 (1972).
    [CrossRef] [PubMed]

1972

1971

T. Sakusabe, S. Kobayashi, Jpn. J. Appl. Phys. 10, 758 (1971).
[CrossRef]

S. Kobayashi, K. Kurihara, Appl. Phys. Lett. 19, 482 (1971).
[CrossRef]

1969

Jay S. Chivian, R. N. Claytor, D. D. Eden, Appl. Phys. Lett. 15, 123 (1969).
[CrossRef]

T. Izawa, M. Kamiyama, Appl. Phys. Lett. 15, 201 (1969).
[CrossRef]

1968

S. Lowenthal, E. Leiba, M. Lucas, A. Werts, C. R. Acad. Sci. Ser. B 226, 1363 (1968).

1965

Chivian, Jay S.

Jay S. Chivian, R. N. Claytor, D. D. Eden, R. B. Hemphill, Appl. Opt. 11, 2649 (1972).
[CrossRef] [PubMed]

Jay S. Chivian, R. N. Claytor, D. D. Eden, Appl. Phys. Lett. 15, 123 (1969).
[CrossRef]

Claytor, R. N.

Jay S. Chivian, R. N. Claytor, D. D. Eden, R. B. Hemphill, Appl. Opt. 11, 2649 (1972).
[CrossRef] [PubMed]

Jay S. Chivian, R. N. Claytor, D. D. Eden, Appl. Phys. Lett. 15, 123 (1969).
[CrossRef]

Eden, D. D.

Jay S. Chivian, R. N. Claytor, D. D. Eden, R. B. Hemphill, Appl. Opt. 11, 2649 (1972).
[CrossRef] [PubMed]

Jay S. Chivian, R. N. Claytor, D. D. Eden, Appl. Phys. Lett. 15, 123 (1969).
[CrossRef]

Hemphill, R. B.

Izawa, T.

T. Izawa, M. Kamiyama, Appl. Phys. Lett. 15, 201 (1969).
[CrossRef]

Kamiyama, M.

T. Izawa, M. Kamiyama, Appl. Phys. Lett. 15, 201 (1969).
[CrossRef]

Kobayashi, S.

T. Sakusabe, S. Kobayashi, Jpn. J. Appl. Phys. 10, 758 (1971).
[CrossRef]

S. Kobayashi, K. Kurihara, Appl. Phys. Lett. 19, 482 (1971).
[CrossRef]

Kurihara, K.

S. Kobayashi, K. Kurihara, Appl. Phys. Lett. 19, 482 (1971).
[CrossRef]

Leiba, E.

S. Lowenthal, E. Leiba, M. Lucas, A. Werts, C. R. Acad. Sci. Ser. B 226, 1363 (1968).

Lowenthal, S.

S. Lowenthal, E. Leiba, M. Lucas, A. Werts, C. R. Acad. Sci. Ser. B 226, 1363 (1968).

Lucas, M.

S. Lowenthal, E. Leiba, M. Lucas, A. Werts, C. R. Acad. Sci. Ser. B 226, 1363 (1968).

Meier, R. W.

Sakusabe, T.

T. Sakusabe, S. Kobayashi, Jpn. J. Appl. Phys. 10, 758 (1971).
[CrossRef]

Werts, A.

S. Lowenthal, E. Leiba, M. Lucas, A. Werts, C. R. Acad. Sci. Ser. B 226, 1363 (1968).

Appl. Opt.

Appl. Phys. Lett.

Jay S. Chivian, R. N. Claytor, D. D. Eden, Appl. Phys. Lett. 15, 123 (1969).
[CrossRef]

T. Izawa, M. Kamiyama, Appl. Phys. Lett. 15, 201 (1969).
[CrossRef]

S. Kobayashi, K. Kurihara, Appl. Phys. Lett. 19, 482 (1971).
[CrossRef]

C. R. Acad. Sci. Ser. B

S. Lowenthal, E. Leiba, M. Lucas, A. Werts, C. R. Acad. Sci. Ser. B 226, 1363 (1968).

J. Opt. Soc. Am.

Jpn. J. Appl. Phys.

T. Sakusabe, S. Kobayashi, Jpn. J. Appl. Phys. 10, 758 (1971).
[CrossRef]

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Figures (2)

Fig. 1
Fig. 1

Experimental arrangement for (a) recording holograms on the thermochromic surface and (b) reconstructing images from a hologram with a He–Ne laser.

Fig. 2
Fig. 2

(a) Back-lighted photograph of object, crossed wires 28 μm in diameter and parallel wires 68 μm in diameter. The planes of the parallel and crossed wires were separated by 1 cm. (b) Photoreduced hologram, which is essentially a photograph of the thermochromic recorder surface, (c) Reconstructed real image R1, the parallel wires as reconstructed at 0.6328 μm; lateral magnification of unity, (d) Reconstructed real image R2, the crossed wires as reconstructed at 0.6328 μm.

Tables (1)

Tables Icon

Table I Summary of Recording and Reconstruction Parameters

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