Abstract

We describe an experimental system that programs three-dimensional optical fields to 200-fs resolution over a 10-ps window by using photorefractive volume reflection holograms in lithium niobate. These pulsed images are detected with an imaging interferometric cross correlator.

© 1995 Optical Society of America

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References

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1994 (3)

1993 (5)

K. B. Hill, D. J. Brady, Opt. Lett. 18, 1739 (1993).
[CrossRef] [PubMed]

K. Purchase, D. Brady, K. Wagner, Opt. Lett. 18, 2129 (1993).
[CrossRef] [PubMed]

Y. T. Mazurenko, V. S. Udaltsov, A. V. Veniaminov, E. Dopel, P. Kuhmstedt, Opt. Commun. 96, 202 (1993).
[CrossRef]

W. S. Warren, H. Rabitz, M. Dahleh, Science 259, 1581 (1993).
[CrossRef] [PubMed]

D. Brady, D. Psaltis, Opt. Quantum Electron. 25, S597 (1993).
[CrossRef]

1992 (2)

1991 (3)

1990 (3)

1985 (1)

1974 (1)

D. von der Linde, A. M. Glass, K. F. Rodgers, Appl. Phys. Lett. 25, 155 (1974).
[CrossRef]

1973 (1)

J. Desbois, F. Gires, P. Tournois, IEEE J. Quantum Electron. QE-9, 213 (1973).
[CrossRef]

Abramson, N.

Acioli, L. H.

Basinger, S.

Brady, D.

Brady, D. J.

Chen, B. S.

Chen, G.-S.

Colombeau, B.

C. Froehly, B. Colombeau, M. Vampouille, in Progress in Optics, E. Wolf, ed. (North-Holland, Amsterdam, 1983), Vol. XX, pp. 65–153.

Cronin-Golomb, M.

Dahleh, M.

W. S. Warren, H. Rabitz, M. Dahleh, Science 259, 1581 (1993).
[CrossRef] [PubMed]

Desbois, J.

J. Desbois, F. Gires, P. Tournois, IEEE J. Quantum Electron. QE-9, 213 (1973).
[CrossRef]

Dominic, V.

Dopel, E.

Y. T. Mazurenko, V. S. Udaltsov, A. V. Veniaminov, E. Dopel, P. Kuhmstedt, Opt. Commun. 96, 202 (1993).
[CrossRef]

Feinberg, J.

Froehly, C.

C. Froehly, B. Colombeau, M. Vampouille, in Progress in Optics, E. Wolf, ed. (North-Holland, Amsterdam, 1983), Vol. XX, pp. 65–153.

Fujimoto, J. G.

Gires, F.

J. Desbois, F. Gires, P. Tournois, IEEE J. Quantum Electron. QE-9, 213 (1973).
[CrossRef]

Glass, A. M.

D. von der Linde, A. M. Glass, K. F. Rodgers, Appl. Phys. Lett. 25, 155 (1974).
[CrossRef]

Goswami, D.

Heritage, J. P.

Hill, K. B.

Hillegas, C. W.

Hong, J.

Ippen, E. P.

Kong, H.

Kuhmstedt, P.

Y. T. Mazurenko, V. S. Udaltsov, A. V. Veniaminov, E. Dopel, P. Kuhmstedt, Opt. Commun. 96, 202 (1993).
[CrossRef]

Leaird, D. E.

Mazurenko, Y. T.

Y. T. Mazurenko, V. S. Udaltsov, A. V. Veniaminov, E. Dopel, P. Kuhmstedt, Opt. Commun. 96, 202 (1993).
[CrossRef]

Michielssen, E.

Patel, J. S.

Psaltis, D.

Purchase, K.

Rabitz, H.

W. S. Warren, H. Rabitz, M. Dahleh, Science 259, 1581 (1993).
[CrossRef] [PubMed]

Rebane, A.

A. Rebane, J. Feinberg, Nature (London) 351, 378 (1991).
[CrossRef]

Rodgers, K. F.

D. von der Linde, A. M. Glass, K. F. Rodgers, Appl. Phys. Lett. 25, 155 (1974).
[CrossRef]

Rodriguez, G.

Strickland, D.

Thurston, R. N.

Tournois, P.

J. Desbois, F. Gires, P. Tournois, IEEE J. Quantum Electron. QE-9, 213 (1973).
[CrossRef]

Tull, J.

Udaltsov, V. S.

Y. T. Mazurenko, V. S. Udaltsov, A. V. Veniaminov, E. Dopel, P. Kuhmstedt, Opt. Commun. 96, 202 (1993).
[CrossRef]

Ulman, M.

Vampouille, M.

C. Froehly, B. Colombeau, M. Vampouille, in Progress in Optics, E. Wolf, ed. (North-Holland, Amsterdam, 1983), Vol. XX, pp. 65–153.

Veniaminov, A. V.

Y. T. Mazurenko, V. S. Udaltsov, A. V. Veniaminov, E. Dopel, P. Kuhmstedt, Opt. Commun. 96, 202 (1993).
[CrossRef]

von der Linde, D.

D. von der Linde, A. M. Glass, K. F. Rodgers, Appl. Phys. Lett. 25, 155 (1974).
[CrossRef]

Wagner, K.

Warren, W. S.

Weiner, A. M.

Yao, X. S.

Yeh, P.

Appl. Opt. (1)

Appl. Phys. Lett. (1)

D. von der Linde, A. M. Glass, K. F. Rodgers, Appl. Phys. Lett. 25, 155 (1974).
[CrossRef]

IEEE J. Quantum Electron. (1)

J. Desbois, F. Gires, P. Tournois, IEEE J. Quantum Electron. QE-9, 213 (1973).
[CrossRef]

J. Opt. Soc. Am. A (1)

J. Opt. Soc. Am. B (2)

Nature (1)

A. Rebane, J. Feinberg, Nature (London) 351, 378 (1991).
[CrossRef]

Opt. Commun. (1)

Y. T. Mazurenko, V. S. Udaltsov, A. V. Veniaminov, E. Dopel, P. Kuhmstedt, Opt. Commun. 96, 202 (1993).
[CrossRef]

Opt. Lett. (9)

Opt. Quantum Electron. (1)

D. Brady, D. Psaltis, Opt. Quantum Electron. 25, S597 (1993).
[CrossRef]

Science (1)

W. S. Warren, H. Rabitz, M. Dahleh, Science 259, 1581 (1993).
[CrossRef] [PubMed]

Other (1)

C. Froehly, B. Colombeau, M. Vampouille, in Progress in Optics, E. Wolf, ed. (North-Holland, Amsterdam, 1983), Vol. XX, pp. 65–153.

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Figures (3)

Fig. 1
Fig. 1

Experimental setup. The solid lines represent the write beams for recording holograms, and the dashed lines represent the probe, signal, and reference beams for reading pulsed images with mirror M1 and the spatial mask removed.

Fig. 2
Fig. 2

Surface plots of the pulsed image at 1-ps time intervals.

Fig. 3
Fig. 3

Temporal cross correlations of two selected points in the pulsed image. Density plots of the image show the locations of the two points that are plotted.

Equations (3)

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T [ t ( x , y ) ] ( x , y , z ) exp ( j 2 k 0 z ) × - p ( t - z - z 1 c ) p * ( t + z - z 1 c ) d t ,
V ( x , y , z ) exp ( j K z ) = V max N n = 1 N T n [ t n ( x , y ) ] ( x , y , z ) × exp ( j 2 k 0 z ) - p ( t - z - z n c ) p * ( t + z - z n c ) d t ,
I ( x , y , τ d ) = - s ( x , y , t ) exp ( j ω 0 t ) + r ( t + τ d ) exp [ j ω 0 ( t + τ d ) ] 2 d t = - { s ( x , y , t ) 2 + r ( t + τ d ) 2 + 2 R [ s ( x , y , t ) r * ( t + τ d ) exp ( - j ω 0 τ d ) ] } d t ,

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