A multichannel AOM for a holographic video system
- Authors
- Son, JY; Shestak, SA; Kim, SK; Epikhin, V; Chun, YS
- Issue Date
- 1998-05
- Publisher
- KOREAN PHYSICAL SOC
- Citation
- JOURNAL OF THE KOREAN PHYSICAL SOCIETY, v.32, no.5, pp.681 - 685
- Abstract
- Many trapezoidally shaped AOMs are joined together to make a multichannel AOM having an aperture length equal to the sum of those of trapezoidally shaped AOMs. A trapezoidally shaped AOM has to have a definite angle between the long parallel and the two non-parallel edges to convert a longitudinal wave propagating normal to the two parallel edges to a shear wave travelling parallel to the edges, and vice versa, with maximum efficiency. For che case of an AOM made from TeO2, a acoustic-mode conversion efficiency of more than 90% was obtained when the angle was 82.33 degrees The performance of the multichannel AOM was tested by combining 6 TeO2 AOMs together with a gap between them of 300 mu m. The holographic fringe data was segmented into 6 equal parts and then inputted to the corresponding AOM. The holographic images were reconstructed by periodical illumination of the multichannel AOM with a green (lambda=0.5145 mu m) pulsed laser beam. The good-quality reconstructed images indicated that the multichannel AOM was working properly.
- Keywords
- AOM; Holographic Video System; Multichannel
- ISSN
- 0374-4884
- URI
- https://pubs.kist.re.kr/handle/201004/143110
- Appears in Collections:
- KIST Article > Others
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