Abstract

As many as 5000 holograms of high-resolution images (320 × 220 pixels) have been stored within a single crystal of Fe:LiNbO3. The nominal angle between the reference beam and the object beam was 90°. Fractal-space multiplexing was used to increase the storage bandwidth.

© 1993 Optical Society of America

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References

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    [CrossRef] [PubMed]
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    [CrossRef]
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    [CrossRef] [PubMed]
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    [CrossRef] [PubMed]
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    [CrossRef]
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    [CrossRef] [PubMed]
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  8. F. H. Mok, D. Psaltis, G. Burr, Proc. Soc. Photo-Opt. Instrum. Eng. 1773, 334 (1992).

1992 (1)

F. H. Mok, D. Psaltis, G. Burr, Proc. Soc. Photo-Opt. Instrum. Eng. 1773, 334 (1992).

1991 (1)

1990 (1)

1988 (1)

D. Psaltis, C. Gu, D. Brady, Proc. Soc. Photo-Opt Instrum. Eng. 963, 70 (1988).

1985 (1)

1974 (1)

1971 (1)

J. J. Amodei, D. L. Staebler, Appl. Phys. Lett. 18, 540 (1971).
[CrossRef]

1964 (1)

A. B. VanderLugt, IEEE Trans. Inf. Theory IT-10, 139 (1964).
[CrossRef]

Amodei, J. J.

J. J. Amodei, D. L. Staebler, Appl. Phys. Lett. 18, 540 (1971).
[CrossRef]

Brady, D.

D. Psaltis, C. Gu, D. Brady, Proc. Soc. Photo-Opt Instrum. Eng. 963, 70 (1988).

Burr, G.

F. H. Mok, D. Psaltis, G. Burr, Proc. Soc. Photo-Opt. Instrum. Eng. 1773, 334 (1992).

Chiou, A. E. T.

Farhat, N.

Gu, C.

D. Psaltis, C. Gu, D. Brady, Proc. Soc. Photo-Opt Instrum. Eng. 963, 70 (1988).

Mok, F. H.

F. H. Mok, D. Psaltis, G. Burr, Proc. Soc. Photo-Opt. Instrum. Eng. 1773, 334 (1992).

F. H. Mok, M. C. Tackitt, H. M. Stoll, Opt. Lett. 16, 605 (1991).
[CrossRef] [PubMed]

Paek, E.

Phillips, W.

Prata, A.

Psaltis, D.

F. H. Mok, D. Psaltis, G. Burr, Proc. Soc. Photo-Opt. Instrum. Eng. 1773, 334 (1992).

D. Psaltis, C. Gu, D. Brady, Proc. Soc. Photo-Opt Instrum. Eng. 963, 70 (1988).

N. Farhat, D. Psaltis, A. Prata, E. Paek, Appl. Opt. 24, 1469 (1985).
[CrossRef] [PubMed]

Staebler, D. L.

D. L. Staebler, W. Phillips, Appl. Opt. 13, 788 (1974).
[CrossRef] [PubMed]

J. J. Amodei, D. L. Staebler, Appl. Phys. Lett. 18, 540 (1971).
[CrossRef]

Stoll, H. M.

Tackitt, M. C.

VanderLugt, A. B.

A. B. VanderLugt, IEEE Trans. Inf. Theory IT-10, 139 (1964).
[CrossRef]

Yeh, P.

Appl. Opt. (3)

Appl. Phys. Lett. (1)

J. J. Amodei, D. L. Staebler, Appl. Phys. Lett. 18, 540 (1971).
[CrossRef]

IEEE Trans. Inf. Theory (1)

A. B. VanderLugt, IEEE Trans. Inf. Theory IT-10, 139 (1964).
[CrossRef]

Opt. Lett. (1)

Proc. Soc. Photo-Opt Instrum. Eng. (1)

D. Psaltis, C. Gu, D. Brady, Proc. Soc. Photo-Opt Instrum. Eng. 963, 70 (1988).

Proc. Soc. Photo-Opt. Instrum. Eng. (1)

F. H. Mok, D. Psaltis, G. Burr, Proc. Soc. Photo-Opt. Instrum. Eng. 1773, 334 (1992).

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Figures (4)

Fig. 1
Fig. 1

Generic schematic diagram of the optical setup for angular multiplexing of volume holograms.

Fig. 2
Fig. 2

(a) Conventional angular multiplexing, (b) fractal-space multiplexing.

Fig. 3
Fig. 3

Sample reconstructions from 1000 holograms.

Fig. 4
Fig. 4

Sample reconstructions from 5000 holograms: (a) and (c) are original images; (b) and (d) are reconstructions.

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