Analyzing the sequence of solar energetic electron events measured at both STEREO-A (STA) and STEREO-B (STB) spacecraft during 17–21 July 2014, when their orbital separation was 34°, we found evidence of a strong non-radial electron propagation in the solar corona below the solar wind source surface. The impulsive electron events were associated with recurrent flare and jet (hereafter flare/jet) activity at the border of an isolated coronal hole situated close to the solar equator. We have focused our study on the solar energetic particle (SEP) event on 17 July 2014, during which both spacecraft detected a similar impulsive and anisotropic energetic electron event suggesting optimal connection of both spacecraft to the parent particle sourc...
We investigate the acceleration source of the impulsive solar energetic particle (SEP) events on 200...
International audienceContext. On 2020 November 29, an eruptive event occurred in an active region l...
The Sun is capable of accelerating ions from ∼ tens of keV up to tens of GeV and electrons from ∼ te...
Analyzing the sequence of solar energetic electron events measured at both STEREO-A (STA) and STEREO...
International audienceAn intriguing feature of many solar energetic particle (SEP) events is the det...
We analyze one of the first solar energetic particle (SEP) events of solar cycle 24 observed at wide...
An intriguing feature of many solar energetic particle (SEP) events is the detection of particles ov...
Context. Each of the two Solar TErrestrial RElations Observatory (STEREO) spacecraft carries a Solar...
International audienceWe investigate the acceleration source of the impulsive solar energetic partic...
Context. A complex and long-lasting solar eruption on 17 April 2021 produced a widespread solar ener...
We study the solar source of the ³He-rich solar energetic particle (SEP) event observed on 2006 Nove...
We present multi-spacecraft observations of four solar electron events using measurements ...
Context. The main sources of solar energetic particle (SEP) events are solar flares and shocks drive...
We investigate two candidate solar sources or active regions (ARs) in association with a solar impul...
We investigate the acceleration source of the impulsive solar energetic particle (SEP) events on 200...
International audienceContext. On 2020 November 29, an eruptive event occurred in an active region l...
The Sun is capable of accelerating ions from ∼ tens of keV up to tens of GeV and electrons from ∼ te...
Analyzing the sequence of solar energetic electron events measured at both STEREO-A (STA) and STEREO...
International audienceAn intriguing feature of many solar energetic particle (SEP) events is the det...
We analyze one of the first solar energetic particle (SEP) events of solar cycle 24 observed at wide...
An intriguing feature of many solar energetic particle (SEP) events is the detection of particles ov...
Context. Each of the two Solar TErrestrial RElations Observatory (STEREO) spacecraft carries a Solar...
International audienceWe investigate the acceleration source of the impulsive solar energetic partic...
Context. A complex and long-lasting solar eruption on 17 April 2021 produced a widespread solar ener...
We study the solar source of the ³He-rich solar energetic particle (SEP) event observed on 2006 Nove...
We present multi-spacecraft observations of four solar electron events using measurements ...
Context. The main sources of solar energetic particle (SEP) events are solar flares and shocks drive...
We investigate two candidate solar sources or active regions (ARs) in association with a solar impul...
We investigate the acceleration source of the impulsive solar energetic particle (SEP) events on 200...
International audienceContext. On 2020 November 29, an eruptive event occurred in an active region l...
The Sun is capable of accelerating ions from ∼ tens of keV up to tens of GeV and electrons from ∼ te...