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Reconstructing subwavelength resolution terahertz holographic images
Author(s) -
Ruoxing Wang,
Guanhua Ren,
Zhi Ren,
Jianlong Liu,
Songtao Li,
Xianzhong Chen,
Li Li
Publication year - 2022
Publication title -
optics express
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.453634
Subject(s) - holography , optics , terahertz radiation , pixel , cardinal point , image resolution , diffraction , resolution (logic) , physics , image quality , computer science , image (mathematics) , artificial intelligence
Computer-generated holography typically generates terahertz (THz) holographic images with a pixel size larger than wavelength. We propose a multi-foci metalens model to reconstruct THz holographic images with subwavelength resolution. The designed devices are realized based on dielectric metasurfaces consisting of silicon micropillars with spatially variant orientations. By exploiting quasi-continuous profile of focal points as the pixels of a holographic image, a metalens can reconstruct a high-resolution target image on its focal plane. The effects of size and pitch of each sub-diffraction focal point on imaging quality and pixel resolution are discussed. The intensity distribution at each focal point indicates that the reconstructed images have subwavelength resolution. In comparison with conventional hologram designs, this design method can be used to reconstruct THz holographic images with subwavelength resolution, which have potential applications in THz communication, information security and anti-counterfeiting.

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