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Multiphysics Enabled Numerical Modeling of a Plasma Based Electrically Small VHF-UHF Antenna

Plasma Physics 2026-04-10 v2

Abstract

A three-dimensional model of a novel plasma based electrically small antenna is developed for investigating the gas properties and antenna parameters under a low pressure, low plasma temperature environment. The antenna exhibits dipole antenna-like behavior with wide-band impedance matching from 213700213-700 MHz. Plasma is sustained by 0.90.9 W of RF input power at 100100 MHz and the gas pressure is strategically controlled at 500500 mili-Torr. The simulated S11S_{11} is verified against the available experimental data and further antenna parameters are extracted. The proposed ESA shows dipole-like radiation pattern with a radiation efficiency of 16%16\% at 700700 MHz. The performance metric for ESAs, the Chu-limit, is exceeded by this antenna with the Bandwidth×EfficiencyBandwidth\times Efficiency reaching 0.1680.168 with a kaka of 0.55710.5571.The findings from this letter demonstrate the practicability of using COMSOL Multiphysics as a tool for predicting plasma behavior and antenna performance while the boundary conditions for all the coupled physics are respected.

Keywords

Cite

@article{arxiv.2405.03077,
  title  = {Multiphysics Enabled Numerical Modeling of a Plasma Based Electrically Small VHF-UHF Antenna},
  author = {Samsud Moon},
  journal= {arXiv preprint arXiv:2405.03077},
  year   = {2026}
}

Comments

Paper material disputed by the originator of the device design

R2 v1 2026-06-28T16:17:25.488Z