Characteristics of the electromagnetic wave propagation in magnetized plasma sheath and practical method for blackout mitigation
Особенности распространения электромагнитной волны в намагниченной плазменной оболочке и практический метод уменьшения потери связи
2024-02-01
SCID: 54.1/jtqgx5dg
Discuss with AI
COMSOL finite element simulationcollision frequencycommunication blackout mitigationdouble Gaussian electron densityexponential magnetic field attenuationincident angle dependencemagnetic windowmagnetized plasma sheathnon-uniform magnetic fieldnon-uniform plasma densityreflected transmitted loss coefficientsright-handed circularly polarized wavewhistler mode
Figures from the paper
Abstract (AI)
“Magnetic window” is considered as an effective method to solve the communication blackout issue. COMSOL software package based on the finite element method is utilized to simulate the propagation of right-handed circularly polarized wave in the magnetized plasma sheath. We assume a double Gaussian model of electron density and an exponential attenuation model of magnetic field. The propagation characteristics of right-handed circularly polarized wave are analyzed by the observation of the reflected, transmitted and loss coefficient. The numerical results show that the propagation of right-handed circularly polarized wave in the magnetized plasma sheath varies for different incident angles, collision frequencies, non-uniform magnetic fields and non-uniform plasma densities. We notice that reducing the wave frequency can meet the propagation conditions of whistle mode in the weak magnetized plasma sheath. And the transmittance of whistle mode is less affected by the variation of the electron density and the collision frequency. It can be used as a communication window.
Key Findings
1
COMSOL finite element simulations analyze right-handed circularly polarized wave propagation in a magnetized plasma sheath using a double Gaussian electron density and exponential magnetic field model.
2
Reducing the wave frequency enables propagation in the whistle mode within weakly magnetized plasma sheaths.
3
Reflected, transmitted and loss coefficients vary with incident angle, collision frequency, non-uniform magnetic fields, and non-uniform plasma densities.
4
Transmittance of the whistle mode is relatively insensitive to variations in electron density and collision frequency, making it a robust communication window for blackout mitigation.
Research Object
Magnetized plasma sheath interacting with a right-handed circularly polarized electromagnetic wave
Research Subject
Propagation characteristics (reflection, transmission, loss, dependence on incident angle, collision frequency, non-uniform magnetic field and plasma density) and practical blackout-mitigation via the magnetic window (whistle mode transmittance)
Publication Details
Publication Date
2024-02-01
Journal
Publisher
ISSN
Cited by
12
Access Type
Author Information
Download PDF
Subscribe to digest