Abstract

The holographic recording characteristics of phenanthrenequinone- (PQ-) doped poly(methyl methacrylate) are investigated. The exposure sensitivity is characterized for single-hologram recording, and the M/# is measured for samples as thick as 3 mm. Optically induced birefringence is observed in this material.

© 1998 Optical Society of America

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References

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  1. A. V. Veniaminov, V. F. Goncharov, and A. P. Popov, Opt. Spektrosk. 70, 864 (1991).
  2. V. I. Sukhanov, J. Opt. Technol. 61, 49 (1994).
  3. K. Curtis, A. Pu, and D. Psaltis, Opt. Lett. 19, 993 (1994).
    [CrossRef] [PubMed]
  4. A. Pu, K. Curtis, and D. Psaltis, Opt. Eng. 35, 2824 (1996).
    [CrossRef]
  5. D. Psaltis, D. Brady, and K. Wagner, Appl. Opt. 27, 1752 (1988).
    [CrossRef]

1996 (1)

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

1994 (2)

1991 (1)

A. V. Veniaminov, V. F. Goncharov, and A. P. Popov, Opt. Spektrosk. 70, 864 (1991).

1988 (1)

Brady, D.

Curtis, K.

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

K. Curtis, A. Pu, and D. Psaltis, Opt. Lett. 19, 993 (1994).
[CrossRef] [PubMed]

Goncharov, V. F.

A. V. Veniaminov, V. F. Goncharov, and A. P. Popov, Opt. Spektrosk. 70, 864 (1991).

Popov, A. P.

A. V. Veniaminov, V. F. Goncharov, and A. P. Popov, Opt. Spektrosk. 70, 864 (1991).

Psaltis, D.

Pu, A.

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

K. Curtis, A. Pu, and D. Psaltis, Opt. Lett. 19, 993 (1994).
[CrossRef] [PubMed]

Sukhanov, V. I.

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

Veniaminov, A. V.

A. V. Veniaminov, V. F. Goncharov, and A. P. Popov, Opt. Spektrosk. 70, 864 (1991).

Wagner, K.

Appl. Opt. (1)

J. Opt. Technol. (1)

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

Opt. Eng. (1)

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

Opt. Lett. (1)

Opt. Spektrosk. (1)

A. V. Veniaminov, V. F. Goncharov, and A. P. Popov, Opt. Spektrosk. 70, 864 (1991).

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Figures (7)

Fig. 1
Fig. 1

Diffraction efficiency versus exposure energy as the hologram is being recorded.

Fig. 2
Fig. 2

Diffraction efficiency versus baking time for a hologram exposed to 1 J/cm2 of energy.

Fig. 3
Fig. 3

Selectivity curves for a 1-mm-thick sample for a weak (top) and a strong (bottom) hologram.

Fig. 4
Fig. 4

Exposure sensitivity of 1- and 3-mm-thick samples.

Fig. 5
Fig. 5

1-mm-thick sample illuminated with a checkerboard pattern of polarized light and imaged between two crossed polarizers. The illuminated regions exhibit birefringence.

Fig. 6
Fig. 6

Strength of 50 holograms recorded in a 3-mm-thick sample.

Fig. 7
Fig. 7

Cumulative grating strengths for 50 holograms in 3-mm-thick samples with varying exposure energy.

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