We present a multi-scale dynamic model for the creation and propagation of artificial plasma layers in the ionosphere observed during high-power high-frequency (HF) heating experiments at HAARP. Ordinary (O) mode electromagnetic (EM) waves excite parametric instabilities and strong Langmuir turbulence (SLT) near the reflection point. The coupling between high-frequency electromagnetic and Langmuir waves and low-frequency ion acoustic waves is numerically simulated using a generalized Zakharov equation. The acceleration of plasma electrons is described by a Fokker-Planck model with an effective diffusion coefficient constructed using the simulated Langmuir wave spectrum. The propagation of the accelerated electrons through the non-uniform io...
A most fascinating result of recent ionospheric experiments has been the discovery of artificial ion...
International audienceNumerical two-dimensional two-fluid MHD simulations of dynamic magnetosphere-i...
This brief review is devoted to full-scale numerical modeling of the nonlinear interactions between ...
We present a multi-scale dynamic model for the creation and propagation of artificial plasma layers ...
The interaction between a high frequency (HF) ordinary mode electromagnetic wave and the ionosphere ...
High-power ordinary mode radio waves produce artificial ionization in the F-region ionosphere at the...
Ionospheric heating experiments have enabled an exploration of the ionosphere as a large-scale natur...
There are recent observations of artificial plasmas created during ionospheric modification experime...
We have numerically investigated the development of strong Langmuir turbulence (SLT) and associated ...
The interaction between a high frequency electromagnetic wave and the ionosphereinduces articial hea...
HF-induced Descending Artificial Plasma Layers (DAPLs) are artificially ionized plasma layers with p...
We present a full-scale simulation of the nonlinear interaction between an intense electromagnetic w...
The propagation and excitation of Artificial Ionospheric Turbulence (AIT) in the magnetic equatorial...
Abstract. Parametric instabilities excited in ionospheric heating experiments are studied. The initi...
HF heating experiment, with linear power ramp from 50 to 92 dBW, was conducted to determine the HF t...
A most fascinating result of recent ionospheric experiments has been the discovery of artificial ion...
International audienceNumerical two-dimensional two-fluid MHD simulations of dynamic magnetosphere-i...
This brief review is devoted to full-scale numerical modeling of the nonlinear interactions between ...
We present a multi-scale dynamic model for the creation and propagation of artificial plasma layers ...
The interaction between a high frequency (HF) ordinary mode electromagnetic wave and the ionosphere ...
High-power ordinary mode radio waves produce artificial ionization in the F-region ionosphere at the...
Ionospheric heating experiments have enabled an exploration of the ionosphere as a large-scale natur...
There are recent observations of artificial plasmas created during ionospheric modification experime...
We have numerically investigated the development of strong Langmuir turbulence (SLT) and associated ...
The interaction between a high frequency electromagnetic wave and the ionosphereinduces articial hea...
HF-induced Descending Artificial Plasma Layers (DAPLs) are artificially ionized plasma layers with p...
We present a full-scale simulation of the nonlinear interaction between an intense electromagnetic w...
The propagation and excitation of Artificial Ionospheric Turbulence (AIT) in the magnetic equatorial...
Abstract. Parametric instabilities excited in ionospheric heating experiments are studied. The initi...
HF heating experiment, with linear power ramp from 50 to 92 dBW, was conducted to determine the HF t...
A most fascinating result of recent ionospheric experiments has been the discovery of artificial ion...
International audienceNumerical two-dimensional two-fluid MHD simulations of dynamic magnetosphere-i...
This brief review is devoted to full-scale numerical modeling of the nonlinear interactions between ...