Curved imaging of Fresnel computer-generated hologram on a liquid crystal on silicon spatial light modulator
Han-Yen Tu, Wei-Chieh Yeh, Chau-Jern Cheng, Chun‐Yen Chang
Abstract
Han-Yen Tu, Wei-Chieh Yeh, Chau-Jern Cheng, Chun‐Yen Chang
Abstract
This work describes a multi-plane iterative algorithm to extend depth of focus (DOF) for curved image reconstruction of Fresnel computer-generated hologram (CGH) on a liquid crystal on silicon spatial light modulator (LCoS-SLM). Compared to the depth of focus in a conventional CGH, the proposed method can improve the DOF at least 2 times in the near-field image reconstruction. The property of wide depth of focus makes it possible to reconstruct the real images displayed on a curved surface. No extra lens set which is usually used in head-up display and projection display is needed. The CGH customized design is feasible and applied for various curved displays and applications.
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This work describes a multi-plane iterative algorithm to extend depth of focus (DOF) for curved image reconstruction of Fresnel computer-generated hologram (CGH) on a liquid crystal on silicon spatial light modulator (LCoS-SLM). Compared to the depth of focus in a conventional CGH, the proposed method can improve the DOF at least 2 times in the near-field image reconstruction. The property of wide depth of focus makes it possible to reconstruct the real images displayed on a curved surface. No extra lens set which is usually used in head-up display and projection display is needed. The CGH customized design is feasible and applied for various curved displays and applications.
Key concepts: Liquid crystal on silicon, Spatial light modulator, Holography, Computer-generated holography, Optics, Holographic display, Focus (optics), Fresnel lens