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http://dx.doi.org/10.3807/KJOP.2004.15.4.299

Realization of the multi-phase level CGH according to the multi-channel encoding method using a PAL-SLM  

Jung, Jong-Rae (School of Electronics and Informations, Kyunghee University)
Baek, Woon-Sik (School of Electronics and Informations, Kyunghee University)
Kim, Jung-Hoi (School of Electronics and Computer Engineering, Chungbuk National University)
Kim, Nam (School of Electronics and Computer Engineering, Chungbuk National University)
Publication Information
Korean Journal of Optics and Photonics / v.15, no.4, 2004 , pp. 299-308 More about this Journal
Abstract
We proposed more efficient encoding methods that can design a multi-channel multi-level phase only computer-generated hologram(CGH) that can reconstruct many objects simultaneously without a conjugate image. We used a fabrication technique for the pixel oriented CGH for designing the pattern of the proposed multi-channel CGH. We investigated the difference of the optical efficiency(η), mean square error(MSE) and signal-to-noise ratio(SNR) of multi-channel CGHs that were designed by three kinds of encoding methods according to the number of quantization phase levels, and we estimated the performance of the pattern of the proposed multi-channel CGH. Generally, as the number of input objects' reference patterns stored in the CGH is increased, the reconstruction quality of the CGH is degraded. But we observed through computer simulation that the diffraction efficiency of the 1-ch CGH is 70%, and those of the 2-ch, 4-ch, 8-ch CGHs are 62%, 62% and 63%. Therefore we found that the diffraction efficiencies of the multi-channel CGHs using the newly proposed encoding method are similar to that of 1-ch CGH. We implemented the CGH optically using a liquid crystal spatial light phase modulator that consisted of a PAL-SLM efficiently coupled with a XGA type LCD by an optical lens and an LD for illuminating the LCD. We discussed the output images that are reconstructed from the PAL-SLM.
Keywords
computer generated holography; CGH; multiplexed holograms; multi-phase holograms; spatial light phase modulator;
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