Photonics Research, Volume. 12, Issue 7, 1522(2024)
Programmable meta-holography dynamics enabled by grating-modulation
Fig. 1. Conceptual illustration of the metasurface-assisted grating-modulation (MAGM) system. (i) Diffraction order of the conventional amplitude-modulated binary grating and phase-modulated sinusoidal grating. (ii) The reconstructed image when the static metasurface is illuminated without grating amplitude modulation. It shows that the static metasurface alone cannot transmit multi-fold information. (iii) The MAGM system with the capability to independently present alternative holographic images. The lower part shows the conceptual schematics for the MAGM system. Time-dependent image information is encoded in incident beams with different grating amplitude distributions. Dynamic holographic images can be shown with these different grating frames.
Fig. 2. Flow chart of the forward pass for complex amplitude hologram optimization. (a) Flow chart of the gradient descent algorithm for generating meta-holograms. (b) Calculated phase profile
Fig. 3. Optical characterization and designed scheme for the MAGM system. (a) Schematic view of the experiment setup, switching the holographic images can be realized by moving and rotating the grating in the
Fig. 4. Schematic illustration and experimentally measured holographic images of the four-channel scheme. (a) Illustration of the working schematic for the four-channel scheme. The expansion of channels is achieved by continuously switching different grating amplitude distributions. (b) Measured four-channel holographic images of each combination. The reconstructed image dynamically switches among “Gear,” “Star,” “Heart,” and “Briefcase,” framed by a light yellow box and compared with the target image at the center.
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Runlong Rao, Shuai Wan, Zhe Li, Yangyang Shi, Zhongyang Li, "Programmable meta-holography dynamics enabled by grating-modulation," Photonics Res. 12, 1522 (2024)
Category: Holography, Gratings, and Diffraction
Received: Jan. 30, 2024
Accepted: May. 7, 2024
Published Online: Jul. 1, 2024
The Author Email: Zhongyang Li (zhongyangli@whu.edu.cn)