Context. The source of high-energy protons (above similar to 500 MeV) responsible for ground level enhancements (GLEs) remains an open question in solar physics. One of the candidates is a shock wave driven by a coronal mass ejection, which is thought to accelerate particles via diffusive-shock acceleration. Aims. We perform physics-based simulations of proton acceleration using information on the shock and ambient plasma parameters derived from the observation of a real GLE event. We analyse the simulation results to find out which of the parameters are significant in controlling the acceleration efficiency and to get a better understanding of the conditions under which the shock can produce relativistic protons. Methods. We use the result...
Protons accelerated to relativistic energies by transient solar and interplanetary phenomena caused ...
Charged particles can be accelerated to high energies by collisionless shock waves in astrophysical ...
Proton acceleration at a parallel coronal shock is modeled with self-consistent Alfven wave excitati...
Context. The source of high-energy protons (above similar to 500 MeV) responsible for ground level e...
With the first observations of solar γ-rays from the decay of pions, the relationship of protons pro...
Three solar cosmic ray ground level enhancements (GLEs) have been analysed to better understand the...
We have developed a new version of a model that combines a two-dimensional Sun-to-Earth magnetohydro...
Aims. We study the effect of magnetic geometry on the efficiency of diffusive shock acceleration (D...
An energetic proton event was observed at a geosynchronous orbit nearly at the same time as an inter...
3D test particle simulations of historic ground level enhancement (GLE) events are performed to inve...
In this work, we apply an updated version of the Neutron Monitor (NM) Based Anisotropic GLE Pure Pow...
International audienceWe have performed 3 one-dimensional full particle electromagnetic simulations ...
<p>Solar energetic particles (SEP) are produced in powerful eruptions originating on the Sun. In pas...
We have developed a new version of a model that combines a two-dimensional Sun-to-Earth magnetohydro...
This paper presents results on modeling the ground-level response of the higher energy protons for t...
Protons accelerated to relativistic energies by transient solar and interplanetary phenomena caused ...
Charged particles can be accelerated to high energies by collisionless shock waves in astrophysical ...
Proton acceleration at a parallel coronal shock is modeled with self-consistent Alfven wave excitati...
Context. The source of high-energy protons (above similar to 500 MeV) responsible for ground level e...
With the first observations of solar γ-rays from the decay of pions, the relationship of protons pro...
Three solar cosmic ray ground level enhancements (GLEs) have been analysed to better understand the...
We have developed a new version of a model that combines a two-dimensional Sun-to-Earth magnetohydro...
Aims. We study the effect of magnetic geometry on the efficiency of diffusive shock acceleration (D...
An energetic proton event was observed at a geosynchronous orbit nearly at the same time as an inter...
3D test particle simulations of historic ground level enhancement (GLE) events are performed to inve...
In this work, we apply an updated version of the Neutron Monitor (NM) Based Anisotropic GLE Pure Pow...
International audienceWe have performed 3 one-dimensional full particle electromagnetic simulations ...
<p>Solar energetic particles (SEP) are produced in powerful eruptions originating on the Sun. In pas...
We have developed a new version of a model that combines a two-dimensional Sun-to-Earth magnetohydro...
This paper presents results on modeling the ground-level response of the higher energy protons for t...
Protons accelerated to relativistic energies by transient solar and interplanetary phenomena caused ...
Charged particles can be accelerated to high energies by collisionless shock waves in astrophysical ...
Proton acceleration at a parallel coronal shock is modeled with self-consistent Alfven wave excitati...