English

$1$-Bit SubTHz RIS with Planar Tightly Coupled Dipoles: Beam Shaping and Prototypes

Signal Processing 2024-02-14 v1

Abstract

In this paper, a proof-of-concept study of a 11-bit wideband reconfigurable intelligent surface (RIS) comprising planar tightly coupled dipoles (PTCD) is presented. The developed RIS operates at subTHz frequencies and a 33-dB gain bandwidth of 27.4%27.4\% with the center frequency at 102102 GHz is shown to be obtainable via full-wave electromagnetic simulations. The binary phase shift offered by each RIS unit element is enabled by changing the polarization of the reflected wave by 180180^\circ. The proposed PTCD-based RIS has a planar configuration with one dielectric layer bonded to a ground plane, and hence, it can be fabricated by using cost-effective printed circuit board (PCB) technology. We analytically calculate the response of the entire designed RIS and showcase that a good agreement between that result and equivalent full-wave simulations is obtained. To efficiently compute the 11-bit RIS response for different pointing directions, thus, designing a directive beam codebook, we devise a fast approximate beamforming optimization approach, which is compared with time-consuming full-wave simulations. Finally, to prove our concept, we present several passive prototypes with frozen beams for the proposed 11-bit wideband RIS.

Keywords

Cite

@article{arxiv.2402.08445,
  title  = {$1$-Bit SubTHz RIS with Planar Tightly Coupled Dipoles: Beam Shaping and Prototypes},
  author = {Xianjun Ma and Yonggang Zhou and Qi Luo and Yihan Ma and Kyriakos Stylianopoulos and George C. Alexandropoulos},
  journal= {arXiv preprint arXiv:2402.08445},
  year   = {2024}
}

Comments

5 pages, 11 figures, 18th European Conference on Antennas and Propagation (EuCAP) - to be presented

R2 v1 2026-06-28T14:47:18.890Z