We present new observations of solar-energetic particles (SEPs) associated with impulsive solar flares that show evidence for their confinement to interplanetary magnetic field lines. Some SEP events exhibit intermittent intensity dropouts becausemagnetic field lines filledwith and empty of particle flux mix together. The edges of these dropouts are observed to be very sharp, suggesting that particles cannot easily move from a filled to an empty field line in the time available during their transport from the Sun. In this paper, we perform high time-resolution observations of intensity fall-off at the edges of observed SEP dropouts in order to look for signatures of particle motion off field lines. However, the statistical study is do...
We study the transport of solar energetic particles (SEPs) in the inner heliosphere in order to rela...
International audienceIn this work, solar flare energetic particle fluxes (Ee ? 42 keV) observed by ...
The transport of solar energetic charged particles along the interplanetary magnetic field in the ec...
Using instrumentation on board the ACE spacecraft we describe short-time scale (~3 hour) variations ...
Solar energetic particles (SEPs), accelerated during solar eruptions, propagate in turbulent solar w...
In situ observations of solar energetic particles (SEPs) often show rapid variations of their intens...
In this dissertation, I explore the relationship between solar energetic particles (SEPs) and the in...
For a number of impulsive solar particle events we examine variations of maximum intensities and tim...
Context: After their acceleration and release at the Sun, solar energetic particles (SEPs) are injec...
This paper investigates the conditions for producing rapid variations of solar energetic particle (S...
Observations at 1 au have confirmed that enhancements in measured energetic-particle (EP) fluxes are...
Context. Current solar energetic particle (SEP) propagation models describe the effects of interplan...
The transport of solar energetic particles (SEPs) in the inner heliosphere is a very important issue...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2020, Tutora:...
Context. Current solar energetic particle (SEP) propagation models describe the effects of interplan...
We study the transport of solar energetic particles (SEPs) in the inner heliosphere in order to rela...
International audienceIn this work, solar flare energetic particle fluxes (Ee ? 42 keV) observed by ...
The transport of solar energetic charged particles along the interplanetary magnetic field in the ec...
Using instrumentation on board the ACE spacecraft we describe short-time scale (~3 hour) variations ...
Solar energetic particles (SEPs), accelerated during solar eruptions, propagate in turbulent solar w...
In situ observations of solar energetic particles (SEPs) often show rapid variations of their intens...
In this dissertation, I explore the relationship between solar energetic particles (SEPs) and the in...
For a number of impulsive solar particle events we examine variations of maximum intensities and tim...
Context: After their acceleration and release at the Sun, solar energetic particles (SEPs) are injec...
This paper investigates the conditions for producing rapid variations of solar energetic particle (S...
Observations at 1 au have confirmed that enhancements in measured energetic-particle (EP) fluxes are...
Context. Current solar energetic particle (SEP) propagation models describe the effects of interplan...
The transport of solar energetic particles (SEPs) in the inner heliosphere is a very important issue...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2020, Tutora:...
Context. Current solar energetic particle (SEP) propagation models describe the effects of interplan...
We study the transport of solar energetic particles (SEPs) in the inner heliosphere in order to rela...
International audienceIn this work, solar flare energetic particle fluxes (Ee ? 42 keV) observed by ...
The transport of solar energetic charged particles along the interplanetary magnetic field in the ec...