|

Influence of the silver-halide light-sensitive material shrinkage on the recovery parameters of three-color volumetric master hologram

Authors: Drozdova E.A., Lushnikov D.S., Markin V.V., Odinokov S.B., Smirnov A.V. Published: 23.12.2015
Published in issue: #6(105)/2015  
DOI: 10.18698/0236-3933-2015-6-114-124

 
Category: Instrument Engineering, Metrology, Information-Measuring Instruments and Systems | Chapter: Instrumentation and Methods to Transform Images and Sound  
Keywords: silver-halide photomaterial, photomaterial shrinkage, shrinkage factor, hologram, master hologram, spectrum of reconstructed radiation, photochemical processing

The article presents a theoretical justification of the fact that the image reconstruction geometry of each color hologram fragment is independent from the light wavelength used for recording. On the contrary, it depends on the recording circuit geometry and shrinkage of the photographic material. It is found out that in the process of image reconstruction the spectral peak maxima of each color hologram component are shifted by different amounts. It is concluded that the differences in the reconstruction scheme geometry of the images recorded by different wavelengths are due to different shrinkage factors of each color component. To minimize the shrinkage, the manufacturing operation complementing the standard process of photochemical processing (CPP) is proposed.

References

[1] Collier Robert J., Burckhardt Christoph B., Lin Lawrence H. Optical Holography. N.Y., Academic Press, Inc., 1971.

[2] Komar V.G., Serov O.B. Izobrazitel’naya golografiya i golograficheskiy kinematograf [Image Holography and Holographic Motion Pictures]. Moscow, Iskusstvo Publ., 1987. 288 p.

[3] Troshchanovich P.V., Kostrov N.A., Pen E.F. The effect of recording material shrinkage on the dispersion characteristic of a reflective phase hologram. Avtometriya [Optoelectronics, Instrumentation and Data Processing], 2004, vol. 40, no. 3, pp. 7182 (in Russ.).

[4] Troshchanovich P.V. Osobennosti struktury ob’emnykh gologramm, obuslovlennye svoystvami registriruyushchey sredy i ikh diagnostika. Avtoref. diss. kand. fiz.-mat. nauk [Features of the Structure of Volume Holograms Due to the Properties of the Recording Medium and Their Diagnostics. Cand. phys.-math. sci. diss. abstr.]. Moscow, MFTI, 2005. 22 p.

[5] Troshchanovich P.V. Determining the Holographic Material Shrinkage from the Analysis of the Dispersion Characteristics of the Reflective Three-Wave Hologram. Tr. 3 Mezhdunar. Konf. molodykh uchenykh i spetsialistov [Proc. 3 Int. Conference of Young Scientists and Specialists]. St. Petersburg, 2003, pp. 218-219 (in Russ.).

[6] Odinokov S.B., Lushnikov D.S., Kuznetsov A.S., Tsyganov I.K. Obtaining Test Samples of Multi-Color Holograms on Photosensitive Material PFG 03Ts and Determining the Material Shrinkage Ratio. Estestvennye i tekhnicheskie nauki [Natural and Technical Sciences], 2013, no. 4, pp. 202-204 (in Russ.).

[7] http://tdslavich.ru/fullgood_5228023.html (accessed 20.01.2015).

[8] Kartuzhanskiy A.L., Krasnyy-Admoni L.V. Khimiya i fizika fotograficheskikh protsessov [Chemistry and Physics of Photographic Processes]. Leningrad, Khimiya Publ., 1987. 137 p.

[9] Bobrinev V.I., Lushnikov D.S., Nikolaev A.I., Odinokov S.B., Tsyganov I.K. Getting and Reading Holograms with Hidden Image. Vestn. Mosk. Gos. Tekh. Univ. im. N.E. Baumana, Priborostr. [Herald of the Bauman Moscow State Tech. Univ., Instrum. Eng.], 2004, no. 1, pp. 37-54 (in Russ.).