Transformation-Optics-Based Design of a Metamaterial Radome for Extending the Scanning Angle of a Phased Array Antenna
Classical Physics
2017-05-04 v2 Materials Science
Abstract
We apply the transformation-optics approach to the design of a metamaterial radome that can extend the scanning angle of a phased-array antenna. For moderate enhancement of the scanning angle, via suitable parameterization and optimization of the coordinate transformation, we obtain a design that admits a technologically viable, robust and potentially broadband implementation in terms of thin-metallic-plate inclusions. Our results, validated via finite-element-based numerical simulations, indicate an alternative route to the design of metamaterial radomes which does not require negative-valued and/or extreme constitutive parameters.
Keywords
Cite
@article{arxiv.1703.03793,
title = {Transformation-Optics-Based Design of a Metamaterial Radome for Extending the Scanning Angle of a Phased Array Antenna},
author = {Massimo Moccia and Giuseppe Castaldi and Giuliana D'Alterio and Maurizio Feo and Roberto Vitiello and Vincenzo Galdi},
journal= {arXiv preprint arXiv:1703.03793},
year = {2017}
}
Comments
9 pages, 10 figures; minor revisions