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◆ NPJ wireless technology2026-01-01

Passive spatial sampling of mmWave and sub-THz propagation channels using omnidirectional lens antennas.

Valentina Cicchetti, Andre Saker Andy, Theo Saunders, Jiahao Hu, Sana Salous, Yang Hao

原始摘要(英文原文)· Original abstract
6G wireless systems promise extreme data rates and dense spatial multiplexing, yet accurate characterization of propagation channels at mmWave and sub-THz frequencies remains challenging due to severe path loss and reliance on mechanically scanned directional antennas. Here, we demonstrate a wideband omnidirectional lens architecture enabling uniform near-horizon spatial sampling across the 75-100 GHz and 220-300 GHz bands. The design combines symmetric waveguide excitation, a conical field redistribution stage, and a dielectric lens to impose a transverse phase profile, producing stable azimuthal radiation with minimal angular bias. Functioning as a passive spatial sampling interface, the antenna captures multipath components across the full azimuth without mechanical scanning. Additively manufactured prototypes exhibit broadband impedance matching and realized gains of 7-8 dBi, with measurements matching full-wave simulations up to 300 GHz. Integrated into a wideband channel sounder in a SISO configuration, the platform enables the extraction of channel parameters in indoor environments, providing a scalable approach to channel characterization and future MIMO-relevant propagation modeling for 6G systems.
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Passive spatial sampling of mmWave and sub-THz propagation channels using omnidirectional lens antennas. — 科研速览 Science Skim