Multi-User MIMO Enhancement using Metasurface Wavefront Bending (MWB)
Abstract
This paper introduces metasurface wavefront bending (MWB) to enhance spatial multiplexing in radiative nearfield multi-user multiple-input multiple-output (MU-MIMO) systems. By increasing spherical-wave curvature, MWB strengthens range-dependent phase variations across the receiver array, reduces inter-user channel correlation and improves user separability. The paper develops a curvature-dependent channel analysis, a generalized-sheet-transition-condition (GSTC) synthesisprocedure for MWB and a complete metasurface-assisted MUMIMO channel model. Both a practical common-profile scheme and an ideal user-specific benchmark are evaluated. The results demonstrate that MWB provides substantial improvements in spectral efficiency and effective channel rank. Finally, a threelayer transmissive Huygens metasurface architecture is proposed for physical implementation.
Cite
@article{arxiv.2607.29542,
title = {Multi-User MIMO Enhancement using Metasurface Wavefront Bending (MWB)},
author = {Xiaolu Yang and Oscar Cespedes Vicente and Christophe Caloz},
journal= {arXiv preprint arXiv:2607.29542},
year = {2026}
}
Comments
15pages