English

Zero-Order Diffraction Suppression in Full Field-of-View Computer Generated Holography: A Camera In the Loop Interferometric Approach

Optics 2026-01-29 v1 Applied Physics

Abstract

We introduce a novel interferometric approach for suppressing zero-order diffraction (ZOD) in phase-only computer-generated holography. The technique relies on the destructive interference between the zeroth-order light and a suppression beam in a plane optically conjugated to the spatial light modulator (SLM). A camera-in-the-loop (CITL) calibration procedure retrieves the optimal pixel-wise phase map that cancels out the ZOD component with high precision, while preserving the full modulation depth of the SLM. Experimental demonstrations on point-cloud and 2D/3D holograms achieve up to 99% suppression of the ZOD intensity, without loss of image quality or field of view. Once calibrated, the correction can be applied to any hologram without recomputation, enabling real-time operation and robust performance over time. This method removes a long-standing barrier to the practical deployment of full-field holography, facilitating the development of compact, high-fidelity holographic engines for augmented and mixed reality displays.

Keywords

Cite

@article{arxiv.2601.20376,
  title  = {Zero-Order Diffraction Suppression in Full Field-of-View Computer Generated Holography: A Camera In the Loop Interferometric Approach},
  author = {Alessandro Cerioni and Samuele Trezzi and Marco Astarita and Tommaso Ongarello and Anna Cesaratto and Giulio Cerullo and Andrea Bassi and Gianluca Valentini and Paolo Pozzi},
  journal= {arXiv preprint arXiv:2601.20376},
  year   = {2026}
}
R2 v1 2026-07-01T09:23:30.255Z