The Effect of the Axial Plasma Electron Density Distribution on the Effective Length and Radiation Pattern of a Plasma Antenna

This study investigates the axial electron density distribution in two plasma antenna configurations excited by a surface wave microwave discharge and its influence on the radiation pattern of antennas. The axial plasma electron density profiles were characterized using two non-invasive diagnostic techniques: the resonant cavity measurements in the TM110 mode and the waveguide transmission analysis. A linear decrease in the plasma electron density along the antenna was observed. The effective electrical length of the plasma antennas, accounting for this density distribution, is found to be approximately half the physical plasma column length. Numerical simulations employing COMSOL Multiphysics based on the Drude model revealed that a realistic nonuniform axial plasma electron density distribution markedly modifies the antenna radiation characteristics. For the wave-type plasma monopole antenna, this results in a shift in the emission maximum, a reduction in the main lobe amplitude, a nearly twofold broadening of the main lobe, and the disappearance of the side lobe. For the quarter-wave-type plasma asymmetric dipole antenna, there is a reduction in the main lobe amplitude without a shift in the maximum and a broadening of the main lobe due to an increase in the side-lobe level and its merging with the main lobe. © 2025 by the authors.

Авторы
Bogachev N.N. 1 , Stepin V.P. 1 , Zhukov V.I. 1 , Andreev Sergey E. 1 , Karfidov Dmitriy M. 1 , Usachonak M. 2 , Konchekov Eugeny M. 1, 3 , Guseǐn-Zade Namik G. 1
Journal
Издательство
Multidisciplinary Digital Publishing Institute (MDPI)
Номер выпуска
4
Язык
English
Статус
Published
Номер
49
Том
8
Год
2025
Организации
  • 1 Prokhorov General Physics Institute of the Russian Academy of Sciences, Moscow, Russian Federation
  • 2 B. I. Stepanov Institute of Physics, Minsk, Belarus
  • 3 Institute of Physical Research and Technology, RUDN University, Moscow, Moscow Oblast, Russian Federation
Ключевые слова
antenna electrical length; gas discharge tubes; low-temperature plasma; microwave cavity; microwave discharge; plasma antenna; plasma electron density; radiation pattern; surface electromagnetic wave
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