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JOURNALS // Optics and Spectroscopy // Archive

Optics and Spectroscopy, 2018 Volume 124, Issue 1, Pages 122–128 (Mi os1101)

This article is cited in 5 papers

Physical optics

Peculiarities of forming a multiband transmission function based on multifrequency acousto-optic diffraction

V. V. Proklova, Yu. G. Rezvovb

a Kotel’nikov Institute of Radio Engineering and Electronics, Fryazino Branch, Russian Academy of Sciences, Fryazino, Moscow oblast, 141190, Russia
b Mendeleev University of Chemical Technology, Novomoskovsk Branch, Novomoskovsk, 301665, Russia

Abstract: An analytical solution for the transmission function of noncoherent wideband radiation is obtained under acousto-optic (AO) filtering using a discrete set of monochromatic AO waves with a small spectral overlap. We studied characteristics of the AO transformation of a continuous spectrum of noncoherent radiation into a given set of discrete narrow bands of spectral transmission by excitation of a discrete set of sound frequencies. We carried out the analysis of transmission functions of individual channels taking into account a partial overlap of their spectra and possible intermodulation distortions. It is shown that a stationary value of the root-mean-square light power is found at the electronic output due to the photoelectric transformation and detecting diffracted light. Based on this, a necessary stationary, multiband, and nearly equidistant transmission function of a device can be formed by using a relevant spectrum of acoustic excitation. Peculiarities of this way of forming the multiband transmission function are revealed: the limitation of diffraction efficiency for an individual channel, the possibility of decoupling side lobes of adjacent channels, etc. A multiband acousto-optic filter (MAOF) was simulated that was based on a paratellurite monocrystal (TeO$_2$), which was previously used for experimental optical encoding. The theoretical and experimental results are in gratifying agreement.

Received: 08.08.2017

DOI: 10.21883/OS.2018.01.45367.178-17


 English version:
Optics and Spectroscopy, 2018, 124:1, 121–128

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© Steklov Math. Inst. of RAS, 2026