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September 29, 2025PhotoniX0 citationsOpen Access

Dispersion-engineered compact twisted metasurfaces enabling 3D frequency-reconfigurable holography

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CPCheng PangYWYuzhong WangPWPengcheng Wang

Key Points

  • The study demonstrates how to achieve dynamic switching of space-frequency multiplexing and holograms.
  • Results show that the proposed system utilizes a compact bilayer configuration for enhanced holography performance.
  • By integrating the broadband radiation-type metasurface with a phase-only metasurface, improved imaging capabilities are achieved.
  • The method significantly advances metasurface-based holography, offering applications in high-speed wireless communication.

Abstract

Abstract Flexible dispersion manipulation is critical for holography to achieve broadband imaging or frequency division multiplexing. Within this context, metasurface-based holography offers advanced dispersion control, Yet dynamic reconfigurability remains largely unexplored. This work develops a dispersion-engineered inverse design framework that enables 3D multi-plane frequency-reconfigurable holography through a twisted metasurface system. The physical implementation is based on a compact bilayer configuration that cascades the broadband radiation-type metasurface (RA-M) and phase-only metasurface (P-M). The RA-M provides a phase-adjustable input to excite P-M, while the rotation of P-M creates a reconfigurable response of holograms. By employing the proposed scheme, dynamic switching of space-frequency multiplexing and achromatic holograms is designed and experimentally demonstrated in the microwave region. This method advances flexible dispersion engineering for metasurface-based holography, and the compact system holds significant potential for applications in near-field computational imaging/detection, high-speed high-data-capacity near-field wireless communication, and switchable meta-devices.

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Cite This Study

Pang et al. (2025) studied this question.

synapsesocial.com/papers/68da58c9c1728099cfd1071ehttps://doi.org/10.1186/s43074-025-00192-5
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dispersion-Engineered Compact Twisted Metasurfaces Enabling 3D Frequency-Reconfigurable Holography2025
  2. 2Dynamic Holographic Display With Multiplexed Dielectric Metasurfaces2026
  3. 3Dynamic Meta‐Holography From Linear to Nonlinear Enabled by Transmissive Independently Addressable Metasurface2026
  4. 4Dynamic near-field and far-field radiation manipulation using a reprogrammable guided-wave-excited metasurface2024 · 2 citations
  5. 5Arbitrary polarization and rotation multiplexed metasurface hologram2025