Aims. The aim of this work is to determine the multi-thermal characteristics and plasma energetics of an eruptive plasmoid and occulted flare observed by the Solar Dynamics Observatory’s Atmospheric Imaging Assembly (SDO/AIA). Methods. We study a 2010 Nov. 3 event (peaking at 12:20 UT in GOES soft X-rays) of a coronal mass ejection and occulted flare that demonstrates the morphology of a classic erupting flux rope. The high spatial and time resolution and six coronal channels of the SDO/AIA images allows the dynamics of the multi-thermal emission during the initial phases of eruption to be studied in detail. The differential emission measure is calculated, using an optimized version of a regularized inversion method, for each pixel ...
Aims: The aim of this work is to investigate the dynamic behavior of a C-class solar flare through t...
We examine the thermal state of plasma associated with a solar flare that occurred July 7, 2012. In ...
Context. Coronal mass ejections (CMEs) are the most violent phenomena observed on the Sun. Currently...
Aims. The aim of this work is to determine the multi-thermal characteristics and plasma energetics o...
<p>Aims. The aim of this work is to determine the multi-thermal characteristics and plasma ene...
Aims: We present a spectroscopic analysis of the pre-eruptive configuration of active region NOAA 11...
Aims: We present a spectroscopic analysis of the pre-eruptive configuration of active region NOAA 11...
Aims. We present a spectroscopic analysis of the pre-eruptive configuration of active region NOAA 11...
Aims. We present a spectroscopic analysis of the pre-eruptive configuration of active region NOAA 11...
P.S acknowledges financial support from the programme Aristotelis/SIEMENS at the NOA.Aims: We presen...
Context. Coordinated observations of a GOES B4.8 microflare with SDO’s Atmospheric Imaging...
Context. The energy release in eruptive flares and the kinematics of the associated coronal mass eje...
Context. Coronal mass ejections (CMEs) are the most violent phenomena observed on the Sun. Currently...
Context. Coordinated observations of a GOES B4.8 microflare with SDO’s Atmospheric Imaging...
Solar eruptive phenomena correspond to various kind of transient activities occurring in the solar a...
Aims: The aim of this work is to investigate the dynamic behavior of a C-class solar flare through t...
We examine the thermal state of plasma associated with a solar flare that occurred July 7, 2012. In ...
Context. Coronal mass ejections (CMEs) are the most violent phenomena observed on the Sun. Currently...
Aims. The aim of this work is to determine the multi-thermal characteristics and plasma energetics o...
<p>Aims. The aim of this work is to determine the multi-thermal characteristics and plasma ene...
Aims: We present a spectroscopic analysis of the pre-eruptive configuration of active region NOAA 11...
Aims: We present a spectroscopic analysis of the pre-eruptive configuration of active region NOAA 11...
Aims. We present a spectroscopic analysis of the pre-eruptive configuration of active region NOAA 11...
Aims. We present a spectroscopic analysis of the pre-eruptive configuration of active region NOAA 11...
P.S acknowledges financial support from the programme Aristotelis/SIEMENS at the NOA.Aims: We presen...
Context. Coordinated observations of a GOES B4.8 microflare with SDO’s Atmospheric Imaging...
Context. The energy release in eruptive flares and the kinematics of the associated coronal mass eje...
Context. Coronal mass ejections (CMEs) are the most violent phenomena observed on the Sun. Currently...
Context. Coordinated observations of a GOES B4.8 microflare with SDO’s Atmospheric Imaging...
Solar eruptive phenomena correspond to various kind of transient activities occurring in the solar a...
Aims: The aim of this work is to investigate the dynamic behavior of a C-class solar flare through t...
We examine the thermal state of plasma associated with a solar flare that occurred July 7, 2012. In ...
Context. Coronal mass ejections (CMEs) are the most violent phenomena observed on the Sun. Currently...