Holographic motion picture: theory and observations

We develop a full density-matrix theory describing the holographic motion picture, the direct recording of a real moving image into an inhomogeneous spectrum of a medium using spectral hole burning. The main emphasis is on the time resolution of the movie. It is concluded that, with a frequency scan...

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Published inJournal of luminescence Vol. 64; no. 1; pp. 273 - 281
Main Authors Sasaki, H., Karaki, K., Mitsunaga, M., Uesugi, N.
Format Journal Article Conference Proceeding
LanguageEnglish
Published Amsterdam Elsevier B.V 01.05.1995
Elsevier
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Abstract We develop a full density-matrix theory describing the holographic motion picture, the direct recording of a real moving image into an inhomogeneous spectrum of a medium using spectral hole burning. The main emphasis is on the time resolution of the movie. It is concluded that, with a frequency scan rate faster than the square inverse of the characteristic time of the event, the moving image is faithfully recorded, the only limiting factor being the bandwidth of the medium. From the numerical simulation, the ultimate time resolution of the order of nanosecond is achieved when the scan rate is above 5 × 10 16 Hz/s for a cryogenic Eu 3+: Y 2 SiO 5 crystal. An experimental demonstration of the movie was performed for this crystal.
AbstractList We develop a full density-matrix theory describing the holographic motion picture, the direct recording of a real moving image into an inhomogeneous spectrum of a medium using spectral hole burning. The main emphasis is on the time resolution of the movie. It is concluded that, with a frequency scan rate faster than the square inverse of the characteristic time of the event, the moving image is faithfully recorded, the only limiting factor being the bandwidth of the medium. From the numerical simulation, the ultimate time resolution of the order of nanosecond is achieved when the scan rate is above 5 × 10 16 Hz/s for a cryogenic Eu 3+: Y 2 SiO 5 crystal. An experimental demonstration of the movie was performed for this crystal.
Author Sasaki, H.
Uesugi, N.
Mitsunaga, M.
Karaki, K.
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10.1364/AO.26.004040
10.1364/OL.16.001890
10.1364/OL.16.001884
10.1364/AO.30.002890
10.1351/pac199264091335
10.1364/OL.19.000752
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Issue 1
Keywords Silicon compounds
Yttrium silicates
Inorganic compounds
Ternary compounds
Recording systems
Hole burning
Cinematography
Theoretical study
Holography
Movies
Experimental study
Language English
License CC BY 4.0
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PublicationTitle Journal of luminescence
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Elsevier
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Mitsunaga, Uesugi, Sasaki, Karaki (BIB5) 1994; 19
Wild, Renn (BIB2) 1991; 50
Mitsunaga, Yano, Uesugi (BIB7) 1991; 16
Wild, Bernet, Kohler, Renn (BIB4) 1992; 64
De Caro, Renn, Wild (BIB3) 1991; 30
Mitsunaga, Brewer (BIB8) 1985; A 32
Renn, Wild (BIB1) 1987; 26
Wild (10.1016/0022-2313(95)00042-O_BIB4) 1992; 64
Mitsunaga (10.1016/0022-2313(95)00042-O_BIB5) 1994; 19
De Caro (10.1016/0022-2313(95)00042-O_BIB3) 1991; 30
Wild (10.1016/0022-2313(95)00042-O_BIB2) 1991; 50
Yano (10.1016/0022-2313(95)00042-O_BIB6) 1991; 16
Renn (10.1016/0022-2313(95)00042-O_BIB1) 1987; 26
Mitsunaga (10.1016/0022-2313(95)00042-O_BIB7) 1991; 16
Mitsunaga (10.1016/0022-2313(95)00042-O_BIB8) 1985; A 32
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Snippet We develop a full density-matrix theory describing the holographic motion picture, the direct recording of a real moving image into an inhomogeneous spectrum...
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StartPage 273
SubjectTerms Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Holography
Instruments, apparatus, components and techniques common to several branches of physics and astronomy
Optics
Photography, photographic instruments and techniques; xerography
Physics
Title Holographic motion picture: theory and observations
URI https://dx.doi.org/10.1016/0022-2313(95)00042-O
Volume 64
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