English

Iterative approach for high-quality binary intensity hologram generation in augmented reality applications

Optics 2026-04-14 v1

Abstract

Binary amplitude spatial light modulators, such as digital micromirror devices (DMDs), are increasingly relevant for computer generated holography due to their high refresh rates, low cost, and due to the emergence of subwavelength pixel architectures. However, the binary constraint limits the reconstruction quality, as conventional approaches rely on a binarization applied as a final step after hologram computation which leads to reduced efficiency and contrast. We introduce an iterative estimation approach for the generation of off axis binary amplitude holograms, in which the binarization constraint is applied at each iteration. We validate the approach through numerical simulations and experimental reconstruction using a DMD based optical setup. Quantitative and qualitative comparisons with random superposition and Gerchberg Saxton methods demonstrate significant improvements in image contrast, light efficiency, and reconstruction fidelity, with comparable computational cost. The proposed method provides a practical route toward high quality CGH using binary modulators and supports emerging applications requiring high speed and high resolution holographic projection.

Keywords

Cite

@article{arxiv.2604.11181,
  title  = {Iterative approach for high-quality binary intensity hologram generation in augmented reality applications},
  author = {Anik Ghosh and Matteo Ziliani and Marco Astarita and Samuele Trezzi and Alessandro Cerioni and Anna Cesaratto and Mara Galli and Gianluca Valentini and Andrea Bassi and Giulio Cerullo and Paolo Pozzi},
  journal= {arXiv preprint arXiv:2604.11181},
  year   = {2026}
}
R2 v1 2026-07-01T12:05:54.635Z