The evolution of a solar flare accelerated non-thermal electron population and associated plasma emission is considered in collisional inhomogeneous plasma. Non-thermal electrons collisionally evolve to become unstable and generate Langmuir waves, which may lead to intense radio emission. We self-consistently simulated the collisional relaxation of electrons, wave-particle interactions, and non-linear Langmuir wave evolution in plasma with density fluctuations. Additionally, we simulated the scattering, decay, and coalescence of the Langmuir waves which produce radio emission at the fundamental or the harmonic of the plasma frequency, using an angle-averaged emission model. Long-wavelength density fluctuations, such as are observed in the c...
Context. In the solar corona, shocks can be generated due to the pressure pulse of a flare and/or dr...
International audienceThe interaction of the electron beam propagating in a nonuniform solar wind pl...
International audienceSolar radio emissions of the type III are between the most intense in the sola...
The evolution of a solar flare accelerated non-thermal electron population and associated plasma emi...
Non-thermal electrons accelerated in the solar corona can produce intense coherent radio emission, k...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
Type III radio bursts are radio emissions associated with solar flares. They are considered to be ca...
Context. High-energy electrons accelerated during solar flares are abundant in the solar corona and ...
Context. High-energy electrons accelerated during solar flares are abundant in the solar corona and ...
Aims. The present study aims to shed light on our understanding of the radiation processes of solar ...
International audienceIn the present paper, we describe a theoretical model of the generation of har...
Non-thermal electron populations are observed throughout the heliosphere. The relaxation of an elect...
Context. Solar activity occurs not only in terms of the well-known 11-year Sun spot cycle but also i...
Context. In the solar corona, shocks can be generated due to the pressure pulse of a flare and/or dr...
International audienceThe interaction of the electron beam propagating in a nonuniform solar wind pl...
International audienceSolar radio emissions of the type III are between the most intense in the sola...
The evolution of a solar flare accelerated non-thermal electron population and associated plasma emi...
Non-thermal electrons accelerated in the solar corona can produce intense coherent radio emission, k...
International audienceThe generation of Langmuir wave turbulence by a weak electron beam in a random...
Type III radio bursts are radio emissions associated with solar flares. They are considered to be ca...
Context. High-energy electrons accelerated during solar flares are abundant in the solar corona and ...
Context. High-energy electrons accelerated during solar flares are abundant in the solar corona and ...
Aims. The present study aims to shed light on our understanding of the radiation processes of solar ...
International audienceIn the present paper, we describe a theoretical model of the generation of har...
Non-thermal electron populations are observed throughout the heliosphere. The relaxation of an elect...
Context. Solar activity occurs not only in terms of the well-known 11-year Sun spot cycle but also i...
Context. In the solar corona, shocks can be generated due to the pressure pulse of a flare and/or dr...
International audienceThe interaction of the electron beam propagating in a nonuniform solar wind pl...
International audienceSolar radio emissions of the type III are between the most intense in the sola...