Abstract

We present the design and fabrication of a phenanthrenequinone-doped poly(methyl methacrylate) photopolymer material. Large blocks of samples were made, and the material showed negligible shrinkage after optical exposures. We recorded and reconstructed 250 holograms at a single spot, using a 1cm3 block.

© 2000 Optical Society of America

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References

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1999 (2)

1998 (2)

1996 (2)

A. Pu, K. Curtis, and D. Psaltis, Opt. Eng. 35, 2824 (1996).
[CrossRef]

F. Mok, G. Burr, and D. Psaltis, Opt. Lett. 21, 886 (1996).
[CrossRef]

1995 (1)

G. W. Burr, F. H. Mok, and D. Psaltis, Opt. Commun. 117, 49 (1995).
[CrossRef]

1994 (2)

1975 (1)

Booth, B. L.

Burr, G.

F. Mok, G. Burr, and D. Psaltis, Opt. Lett. 21, 886 (1996).
[CrossRef]

Burr, G. W.

D. Psaltis and G. W. Burr, IEEE Comput. 31(2), 52 (1998).
[CrossRef]

G. W. Burr, F. H. Mok, and D. Psaltis, Opt. Commun. 117, 49 (1995).
[CrossRef]

Campbell, S.

Chen, W. Z.

S. H. Lin, W. Z. Chen, W. T. Whang, and K. Y. Hsu, Proc. SPIE 3801, 100 (1999).
[CrossRef]

Curtis, K.

A. Pu, K. Curtis, and D. Psaltis, Opt. Eng. 35, 2824 (1996).
[CrossRef]

Dhar, L.

Hale, A.

Hsu, K. Y.

S. H. Lin, W. Z. Chen, W. T. Whang, and K. Y. Hsu, Proc. SPIE 3801, 100 (1999).
[CrossRef]

Katz, H. E.

Lin, S. H.

S. H. Lin, W. Z. Chen, W. T. Whang, and K. Y. Hsu, Proc. SPIE 3801, 100 (1999).
[CrossRef]

Mok, F.

F. Mok, G. Burr, and D. Psaltis, Opt. Lett. 21, 886 (1996).
[CrossRef]

Mok, F. H.

G. W. Burr, F. H. Mok, and D. Psaltis, Opt. Commun. 117, 49 (1995).
[CrossRef]

Psaltis, D.

G. J. Steckman, I. Solomatine, G. Zhou, and D. Psaltis, Opt. Lett. 23, 1310 (1998).
[CrossRef]

D. Psaltis and G. W. Burr, IEEE Comput. 31(2), 52 (1998).
[CrossRef]

F. Mok, G. Burr, and D. Psaltis, Opt. Lett. 21, 886 (1996).
[CrossRef]

A. Pu, K. Curtis, and D. Psaltis, Opt. Eng. 35, 2824 (1996).
[CrossRef]

G. W. Burr, F. H. Mok, and D. Psaltis, Opt. Commun. 117, 49 (1995).
[CrossRef]

Pu, A.

A. Pu, K. Curtis, and D. Psaltis, Opt. Eng. 35, 2824 (1996).
[CrossRef]

Schilling, F. C.

Schilling, M. L.

Schnoes, M. G.

Solomatine, I.

Steckman, G. J.

Sukhanov, V. I.

V. I. Sukhanov, J. Opt. Technol. 61, 49 (1994).

Whang, W. T.

S. H. Lin, W. Z. Chen, W. T. Whang, and K. Y. Hsu, Proc. SPIE 3801, 100 (1999).
[CrossRef]

Yeh, P.

Yi, X.

Zhou, G.

Appl. Opt. (1)

IEEE Comput. (1)

D. Psaltis and G. W. Burr, IEEE Comput. 31(2), 52 (1998).
[CrossRef]

J. Opt. Technol. (1)

V. I. Sukhanov, J. Opt. Technol. 61, 49 (1994).

Opt. Commun. (1)

G. W. Burr, F. H. Mok, and D. Psaltis, Opt. Commun. 117, 49 (1995).
[CrossRef]

Opt. Eng. (1)

A. Pu, K. Curtis, and D. Psaltis, Opt. Eng. 35, 2824 (1996).
[CrossRef]

Opt. Lett. (4)

Proc. SPIE (1)

S. H. Lin, W. Z. Chen, W. T. Whang, and K. Y. Hsu, Proc. SPIE 3801, 100 (1999).
[CrossRef]

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Figures (4)

Fig. 1
Fig. 1

Molecular weight analysis spectra of the liquid sample of the exposed PQ and MMA mixture. The labels PQ:MMA-CO:MMA and PQ:MMACO2:MMA indicate that the CO:MMA components have been removed from the PQ:MMA molecule by a gas chromatograph–mass spectrometer.

Fig. 2
Fig. 2

Photograph of an image directly transmitted through a 4.8-mm-thick block.

Fig. 3
Fig. 3

Schematic diagram of a 90°-geometry recording setup: BS, beam splitter; SH1, SH2, shutters; L1–L4, lenses; F, focal length; LCTV, liquid-crystal television; SF/BE, spatial filter–beam expander. ST/M1, mirror 1.

Fig. 4
Fig. 4

Photographs of (a) the original and (b) one of the reconstructed images, and the corresponding gray-scale distribution along an arbitrary horizontal line on each image.

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