Context. The Parker Solar Probe (PSP) measures solar wind protons and electrons near the Sun. To study the thermodynamic properties of electrons and protons, we include electron effects, such as distributed turbulent heating between protons and electrons, Coulomb collisions between protons and electrons, and heat conduction of electrons. Aims. We develop a general theoretical model of nearly incompressible magnetohydrodynamic (NI MHD) turbulence coupled with a solar wind model that includes electron pressure and heat flux. Methods. It is important to note that 60% of the turbulence energy is assigned to proton heating and 40% to electron heating. We use an empirical expression for the electron heat flux. We derived a nonlinear dissipation t...
International audienceAbstract We utilize observations from the Parker Solar Probe (PSP) to study th...
Spacecraft observations from the interplanetary medium of our solar system reveal the presence of a ...
A model is presented for generation of fast solar wind in coronal holes, relying on heating that is ...
Context. The Parker Solar Probe (PSP) measures solar wind protons and electrons near the Sun. To stu...
We examine the effects of including effects of both protons and electrons on the heating of the fast...
Previous formulations of heating and transport associated with strong magnetohydrodynamic (MHD) turb...
We test a theory presented previously to account for the turbulent transport of magnetic fluctuation...
In this Letter, we study the connection between the large-scale dynamics of the turbulence cascade a...
International audienceVarious remote sensing observations have been used so far to probe the turbule...
We have developed a new three-dimensional magnetohydrodynamic (MHD) solar wind model coupled to the...
Aims. We survey the electron heat flux observed by the Parker Solar Probe (PSP) in the near-Sun envi...
An exospheric kinetic solar wind model is interfaced with an observation-driven single-fluid magneto...
International audienceAbstract We utilize observations from the Parker Solar Probe (PSP) to study th...
Spacecraft observations from the interplanetary medium of our solar system reveal the presence of a ...
A model is presented for generation of fast solar wind in coronal holes, relying on heating that is ...
Context. The Parker Solar Probe (PSP) measures solar wind protons and electrons near the Sun. To stu...
We examine the effects of including effects of both protons and electrons on the heating of the fast...
Previous formulations of heating and transport associated with strong magnetohydrodynamic (MHD) turb...
We test a theory presented previously to account for the turbulent transport of magnetic fluctuation...
In this Letter, we study the connection between the large-scale dynamics of the turbulence cascade a...
International audienceVarious remote sensing observations have been used so far to probe the turbule...
We have developed a new three-dimensional magnetohydrodynamic (MHD) solar wind model coupled to the...
Aims. We survey the electron heat flux observed by the Parker Solar Probe (PSP) in the near-Sun envi...
An exospheric kinetic solar wind model is interfaced with an observation-driven single-fluid magneto...
International audienceAbstract We utilize observations from the Parker Solar Probe (PSP) to study th...
Spacecraft observations from the interplanetary medium of our solar system reveal the presence of a ...
A model is presented for generation of fast solar wind in coronal holes, relying on heating that is ...