A popular scenario for electron acceleration in solar flares is transit-time damping of low-frequency MHD waves excited by reconnection and its outflows. The scenario requires several processes in sequence to yield energetic electrons of the observed large number. Until now there was very little evidence for this scenario, as it is even not clear where the flare energy is released. RHESSI measurements of bremsstrahlung by non-thermal flare electrons yield energy estimates as well as the position where the energy is deposited. Thus quantitative measurements can be put into the frame of the global magnetic field configuration as seen in coronal EUV line observations. We present RHESSI observations combined with TRACE data that suggest primary...
International audienceWe review recent progress on our understanding of radio emission from solar fl...
Solar flares are among the most energetic and interesting phenomena in the Solar system, releasing u...
A large fraction of the energy released during solar flares is carried by accelerated electrons and ...
High-energy X-rays and γ-rays from solar flares were discovered just over fifty years ago. Since tha...
Knowledge of the energy distribution of electrons accelerated in solar flares is important for const...
Solar flares are huge explosions on the Sun that release a tremendous amount of energy from the coro...
International audience Aims: We aim to constrain the acceleration, injection, and transport processe...
Context. Among other things, solar flares are accompanied by the production of energetic e...
International audience Aims: We aim to constrain the acceleration, injection, and transport processe...
International audience Aims: We aim to constrain the acceleration, injection, and transport processe...
Context. Among other things, solar flares are accompanied by the production of energetic e...
Context. Among other things, solar flares are accompanied by the production of energetic e...
Context. Among other things, solar flares are accompanied by the production of energetic e...
A large fraction of the energy released during solar flares is carried by accelerated electrons and ...
We use RHESSI hard X-ray observations to constrain acceleration of solar flare electrons, generally ...
International audienceWe review recent progress on our understanding of radio emission from solar fl...
Solar flares are among the most energetic and interesting phenomena in the Solar system, releasing u...
A large fraction of the energy released during solar flares is carried by accelerated electrons and ...
High-energy X-rays and γ-rays from solar flares were discovered just over fifty years ago. Since tha...
Knowledge of the energy distribution of electrons accelerated in solar flares is important for const...
Solar flares are huge explosions on the Sun that release a tremendous amount of energy from the coro...
International audience Aims: We aim to constrain the acceleration, injection, and transport processe...
Context. Among other things, solar flares are accompanied by the production of energetic e...
International audience Aims: We aim to constrain the acceleration, injection, and transport processe...
International audience Aims: We aim to constrain the acceleration, injection, and transport processe...
Context. Among other things, solar flares are accompanied by the production of energetic e...
Context. Among other things, solar flares are accompanied by the production of energetic e...
Context. Among other things, solar flares are accompanied by the production of energetic e...
A large fraction of the energy released during solar flares is carried by accelerated electrons and ...
We use RHESSI hard X-ray observations to constrain acceleration of solar flare electrons, generally ...
International audienceWe review recent progress on our understanding of radio emission from solar fl...
Solar flares are among the most energetic and interesting phenomena in the Solar system, releasing u...
A large fraction of the energy released during solar flares is carried by accelerated electrons and ...