Synthetic Quantum Holography with Undetected Light
Abstract
Utilizing nonlinear interferometers for sensing with undetected light enables new sensing and imaging techniques in spectral ranges that are difficult to detect. To enhance this method for future applications, it is advantageous to extract both amplitude and phase information of an object. This study introduces two approaches for synthetic quantum holography with undetected light, which allows for obtaining an object's amplitude and phase information in a nonlinear interferometer by capturing only a single image. One method is based on quasi-phase-shifting holography using superpixel structures displayed on a spatial light modulator. The other method relies on synthetic off-axis holography implemented through a linear phase gradient on a spatial light modulator. Both approaches are experimentally analyzed for applicability and compared against available multi-acquisition methods.
Keywords
Cite
@article{arxiv.2410.17239,
title = {Synthetic Quantum Holography with Undetected Light},
author = {Sebastian Töpfer and Sergio Tovar and Josué R. León Torres and Daniel Derr and Enno Giese and Jorge Fuenzalida and Markus Gräfe},
journal= {arXiv preprint arXiv:2410.17239},
year = {2025}
}
Comments
13 pages, 9 figures