English

Characterization of a Displaced Coaxial Feed for Cascaded Cylindrical Metasurfaces

Applied Physics 2024-08-09 v1 Classical Physics Optics

Abstract

This paper characterizes a realistic feed for cylindrical metasurfaces, allowing it to be included in metasurface design. Specifically, it investigates a coaxial feed which is displaced from the center (off-center) of concentrically-cascaded cylindrical metasurfaces. Formulas are reported to quickly compute the multimodal S-matrix (scattering properties) of a displaced feed from that of the central feed. The theory is rigorously derived based on the addition theorem of Hankel functions for all azimuthal modes. Moreover, the resulting multimodal S-matrix is combined with the multimodal wave matrix theory used to model cylindrical metasurfaces, allowing devices to be designed that realize arbitrary field transformations from a displaced coaxial feed. A design example is reported, which opens new opportunities in the realization of realistic, high-performance cylindrical-metasurface-based devices.

Keywords

Cite

@article{arxiv.2408.03949,
  title  = {Characterization of a Displaced Coaxial Feed for Cascaded Cylindrical Metasurfaces},
  author = {Chun-Wen Lin and Richard W. Ziolkowski and Anthony Grbic},
  journal= {arXiv preprint arXiv:2408.03949},
  year   = {2024}
}

Comments

11 pages, 8 figures