Dynamic two-dimensional refractive index modulation for high performance acousto-optic deflector

The performance of an acousto-optic deflector is studied for two-dimensional refractive index that varies as periodic and sinc functions in the transverse and longitudinal directions, respectively, with respect to the direction of light propagation. Phased array piezoelectric transducers can be oper...

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Bibliographic Details
Published inOptics express Vol. 23; no. 26; pp. 33667 - 33680
Main Authors Wang, Tiansi, Zhang, Chong, Aleksov, Aleksandar, Salama, Islam A, Kar, Aravinda
Format Journal Article
LanguageEnglish
Published United States 28.12.2015
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Summary:The performance of an acousto-optic deflector is studied for two-dimensional refractive index that varies as periodic and sinc functions in the transverse and longitudinal directions, respectively, with respect to the direction of light propagation. Phased array piezoelectric transducers can be operated at different phase shifts to produce a two-dimensionally inhomogeneous domain of phase grating in the acousto-optic media. Also this domain can be steered at different angles by selecting the phase shift appropriately. This mechanism of dynamically tilting the refractive index-modulated domain enables adjusting the incident angle of light on the phase grating plane without moving the light source. So the Bragg angle of incidence can be always achieved at any acoustic frequency, and consequently, the deflector can operate under the Bragg diffraction condition at the optimum diffraction efficiency. Analytic solutions are obtained for the Bragg diffraction of plane waves based on the second order coupled mode theory, and the diffraction efficiency is found to be unity for optimal index modulations at certain acoustic parameters.
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ISSN:1094-4087
1094-4087
DOI:10.1364/OE.23.033667