collaborators

9 papers

physics.app-ph2026

Sub-Terahertz Channel Performance under Snowfall

Kefeng Huang, Jiabiao Zhao, Yuheng Song +8

The terahertz (THz) band promises terabit-per-second links but is highly sensitive to snowfall. Natural snowflakes are non-spherical. Yet existing THz studies treat them as spheres…

physics.app-ph2026

Near-Field Coupling of Polypropylene Dielectric Waveguide Routed Near PCB Board at Terahertz Frequencies

Wenbo Liu, Jiabiao Zhao, Kefeng Huang +5

The growing demand for high-capacity, low-loss short-reach links in highly integrated electronic systems makes it necessary to understand how terahertz (THz) dielectric waveguides…

physics.app-ph2026

Measurement and Modeling of Structure-Induced Surface Scattering on Terahertz Channel

Peian Li, Yapeng Ge, Jiacheng Liu +8

As terahertz (THz) frequencies emerge as promising candidates for next-generation wireless networks, accurate characterization of propagation mechanisms in indoor/outdoor environme…

physics.app-ph2025

Experimental Characterization and Dynamic Modeling of THz Channels Under Fog Conditions

Jiaobiao Zhao, Kefeng Huang, Xiaoxiang Li +7

The terahertz (THz) band is a promising candidate for sixth-generation wireless networks, but its deploymen in outdoor environments is challenged by meteorological phenomena, parti…

physics.app-ph2025

Propagation Performance of Terahertz Channels in Lunar Dust

Peian Li, Jiabiao Zhao, Mingxia Zhang +4

The growing lunar exploration programs require robust communication systems for dust-laden environments, necessitating comprehensive understanding of channel propagation characteri…

physics.app-ph2025

Eavesdropping Risk in Terahertz Channels by Covered Wavy Surfaces

Peian Li, Wenbo Liu, Jiabiao Zhao +6

Terahertz communications offer unprecedented data rates for next-generation wireless networks but suffer blockage susceptibility that restrict coverage and introduce physical-layer…