Incoherent lensless imaging via coherency back-propagation
Optics
2017-10-11 v1
Abstract
The two-point complex coherence function constitutes a complete representation for scalar quasi-monochromatic optical fields. Exploiting dynamically reconfigurable slits implemented with a digital micromirror device, we report on measurements of the complex two-point coherence function for partially coherent light scattering from a `scene' comprising one or two objects at different transverse and axial positions with respect to the source. Although the intensity shows no discernible shadows in absence of a lens, numerically back-propagating the measured complex coherence function allows estimating the objects' sizes and locations -- and thus the reconstruction of the scene.
Cite
@article{arxiv.1705.03993,
title = {Incoherent lensless imaging via coherency back-propagation},
author = {Ahmed El-Halawany and Andre Beckus and H. Esat Kondakci and Morgan Monroe and Nafiseh Mohammadian and George K. Atia and Ayman F. Abouraddy},
journal= {arXiv preprint arXiv:1705.03993},
year = {2017}
}
Comments
4 pages, 4 figures