pith. sign in

arxiv: 1606.04630 · v1 · pith:3NWMR6ZEnew · submitted 2016-06-15 · ⚛️ physics.class-ph · physics.optics

Phaseless computational imaging with a radiating metasurface

classification ⚛️ physics.class-ph physics.optics
keywords imagingcomputationalphaselessmeasurementsbeennovelrecentstudied
0
0 comments X p. Extension
pith:3NWMR6ZE Add to your LaTeX paper What is a Pith Number?
\usepackage{pith}
\pithnumber{3NWMR6ZE}

Prints a linked pith:3NWMR6ZE badge after your title and writes the identifier into PDF metadata. Compiles on arXiv with no extra files. Learn more

read the original abstract

Computational imaging modalities support a simplification of the active architectures required in an imaging system and these approaches have been validated across the electromagnetic spectrum. Recent implementations have utilized pseudo-orthogonal radiation patterns to illuminate an object of interest---notably, frequency-diverse metasurfaces have been exploited as fast and low-cost alternative to conventional coherent imaging systems. However, accurately measuring the complex-valued signals in the frequency domain can be burdensome, particularly for sub-centimeter wavelengths. Here, computational imaging is studied under the relaxed constraint of intensity-only measurements. A novel 3D imaging system is conceived based on 'phaseless' and compressed measurements, with benefits from recent advances in the field of phase retrieval. In this paper, the methodology associated with this novel principle is described, studied, and experimentally demonstrated in the microwave range. A comparison of the estimated images from both complex valued and phaseless measurements are presented, verifying the fidelity of phaseless computational imaging.

This paper has not been read by Pith yet.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.