We investigate the origin of mesoscale structures in the solar wind called microstreams, defined as enhancements in the solar wind speed and temperature that last several hours. They were first clearly detected in Helios and Ulysses solar wind data and are now omnipresent in the “young” solar wind measured by the Parker Solar Probe and Solar Orbiter. These recent data reveal that microstreams transport a profusion of Alfvénic perturbations in the form of velocity spikes and magnetic switchbacks. In this study, we use a very-high-resolution 2.5D MHD model of the corona and the solar wind to simulate the emergence of magnetic bipoles interacting with the preexisting ambient corona and the creation of jets that become microstreams propagating ...
We present EUV solar observations showing evidence for omnipresent jetting activity driven by small-...
Measurements of the near-Sun solar wind by Parker Solar Probe have revealed the presence of largenum...
The numerical simulations were performed using HPC resources from CALMIP (Grant 2020-P1504).Internat...
International audienceContext. Current models of the solar wind must approximate (or ignore) the sma...
International audienceDuring the solar minimum, when the Sun is at its least active, the solar wind(...
International audienceConvection and rotation drive the solar dynamo and, ultimately, provide the me...
Context. In situ measurements by several spacecraft have revealed that the solar wind is frequently ...
The prediction of a supersonic solar wind1 was first confirmed by spacecraft near Earth2,3 and later...
The major purpose of this thesis is to understand the structure of the streamer-stalk solar wind, fr...
International audienceAbstract The solar wind is known to be highly structured in space and time. Ob...
The steady, supersonic outflow from the Sun we call the solar wind was first posited in the 1950s an...
Current models of the solar wind must approximate (or ignore) the small-scale dynamics within the so...
We present EUV solar observations showing evidence for omnipresent jetting activity driven by small-...
Measurements of the near-Sun solar wind by Parker Solar Probe have revealed the presence of largenum...
The numerical simulations were performed using HPC resources from CALMIP (Grant 2020-P1504).Internat...
International audienceContext. Current models of the solar wind must approximate (or ignore) the sma...
International audienceDuring the solar minimum, when the Sun is at its least active, the solar wind(...
International audienceConvection and rotation drive the solar dynamo and, ultimately, provide the me...
Context. In situ measurements by several spacecraft have revealed that the solar wind is frequently ...
The prediction of a supersonic solar wind1 was first confirmed by spacecraft near Earth2,3 and later...
The major purpose of this thesis is to understand the structure of the streamer-stalk solar wind, fr...
International audienceAbstract The solar wind is known to be highly structured in space and time. Ob...
The steady, supersonic outflow from the Sun we call the solar wind was first posited in the 1950s an...
Current models of the solar wind must approximate (or ignore) the small-scale dynamics within the so...
We present EUV solar observations showing evidence for omnipresent jetting activity driven by small-...
Measurements of the near-Sun solar wind by Parker Solar Probe have revealed the presence of largenum...
The numerical simulations were performed using HPC resources from CALMIP (Grant 2020-P1504).Internat...