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Abstrakty
The milestone applications discussion of high frequency acoustooptics is very aim of present paper. The acoustooptical (AO) components such as Bragg modulator (including standing and running wave modulałors), deflectors, others on very high frequencies (up to 10 GHz) working in wide freąuency rangę (up to 3 GHz) are considered, There also discussed some traditional and modern uses of these devices. The main principles and peculiaritieś of Bragg cells design are discussed. The results of experimental investigation are correspond to theoretical predictions. The specific problems, which are stipulated by very high freąuency rangę, are considered. There are: large sound attenuation influence; peculiarities of interaction geometry and light aperture forming; multilayer transducer's features; electrical matching with electromagneticpower wave guide. The ways of High Freąuency Bragg cells parameters optimisation are discussed.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
135--140
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
- Saratov State University,410026, Astrakhanskaya 83, Saratov, RUSSIA
Bibliografia
- 1. V.V.Petrov, “How to create 3 GHz bandwidth AO bragg cell' Advances in Acoustooptics '96 10-th topical meeting of the European Optical Society. France Telecom CNET, Paris, France, 6-7 June, 46-47 (1996).
- 2. V.V.Petrov, B.M.Gur'ev, V.I.Ziborov, A.D.Chemobrovkin, “Wideband. (20 MHz-160 MHz) acousto-optical standing-wave modulator for fluorometry and mode synchronization" Optical Information Processing of SPIE 2051.124-128 (1993).
- 3. V.I.Balakshy, V.N.Parygin, L.E.Chirkov, Physical basis of acoustooptics, M: «Radio i Svyaz», (1985).
- 4. V.V.Petrov, S.A.Lapin, Anual Report of SPF "Excentre" Na 160301 Development and design of standingwave acoustooptical high frequency modulator, (2001).
- 5. V.V.Petrov, Set-up for electronic forming of three dimensional holographic image, Patent of Russian Federation Ns 2117975, Priority 13.11.(1996).
- 6. V.V.Petrov, Holographic Yideo, Acoustooptical approach, Saratov, "GosUNZ" - Publishing-housej (2002).
- 7. V.Petrov, Acoustooptical Approach for Moving Scene Holography, Proceedings of IMED’2003, Daegu, South Korea, July 9-11,451-462 (2003).
- 8. Yu.N.Denisyuk, “About reproduction of object optical features in wave field of radiation, distorted by this object” - «DAN SSSR» 144, 1275, (1962); Optika i Spectrokopiya 15, 522, (1963); 18,152 (1965).
- 9. V.V.Petrov, B.M.Gur’ev, V.V.Kolosov, S.S.Kuryshoy, S.A.Lapin, J.Sapriel, On acoustooptical resonant conditions in GaAs and InP for the creation of high efficiency 2 GHz bandwidth Bragg cell, Photonics and Optoelectronics, New York-Moscow, 3,12-18 (1995).
- 10. T.-C. Poon, P.P.Banegee, “Two-dimensionalfeature extraction and beam fanning suppression using acousto-optics" PROC SPIE 4514,61-74 (2001).
- 11. M.R.Chatteijee, J.J.Huang, “Demonstration of acousto-optic bistability and chaos by direct non-linear circuit modeling”, Appl. Opt., 2506-2517 (1992).
- 12. V.I.Balakshy, I.A.Nagaeva, “Optoelectronic generator based on acoustooptic interaction effect" Quant.Electron. 23,261-264 (1996).
- 13. V.I.Balakshy, S.V.Emelianov, “Laser-like acoustooptic generator" PROC SPIE 4514. 82-89 (2001).
- 14. R.Reibold, P.Kwiek, “Extension of light-diffraction tomography beyond the weak acousto-optic interaction”, Acustica 81.43-52 (1995).
- 15. C.DeCusatis, J.Koay, D.M.Litynski, P.Das, "‘The Wavelet Transforms: Fundamentals, & Implementation using Acousto-optic Correlators”, PROC SPIE 2643.17-37 (1995).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5356ac9e-3e49-44a5-b110-6e0399ce1418
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