Angle multiplexing optical image encryption in the fresnel transform domain using phase-only computer-generated hologram

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Abstract

We propose an angle multiplexing method for optics-based image encryption using a phase-only computer-generated hologram (POCGH) in the tilted Fresnel transform (TFrT) domain. Modified Gerchberg-Saxton algorithms, based on the three types of rotation manipulation in both the hologram and reconstruction planes, are used with their corresponding TFrT parameters to extract the phase-only functions (POFs) of the target images. All the extracted POFs are then phase-modulated and summed to obtain the final POCGH, which is capable of multiplexing and avoiding overlap in the reconstructed images. The computer simulation results show that the images corresponding to the various rotation manipulations at the hologram and image reconstruction planes can be successfully restored with high correlation coefficients. Due to the encrypted nature of the multiplexed images, a higher system security level can be achieved, as the images can only be correctly displayed when all the required parameters in the TFrT are available. The angle sensitivity on the image quality for each manipulation is also investigated.

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APA

Chang, H. T., Wang, Y. T., & Chen, C. Y. (2020). Angle multiplexing optical image encryption in the fresnel transform domain using phase-only computer-generated hologram. Photonics, 7(1). https://doi.org/10.3390/PHOTONICS7010001

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