The Parker Solar Probe mission provides a unique opportunity to characterize several features of the solar wind at different heliocentric distances. Recent findings have shown a transition in the inertial range spectral and scaling properties around 0.4-0.5 au when moving away from the Sun. Here we provide, for the first time, how to reconcile these observational results on the radial evolution of the magnetic and velocity field fluctuations with two scenarios drawn from the magnetohydrodynamic theory. The observed breakdown is the result of the radial evolution of magnetic field fluctuations and plasma thermal expansion affecting the distribution between magnetic and velocity fluctuations. The two scenarios point towards an evolving nature...
We investigated the incompressible and compressible magnetohydrodynamic (MHD) energy cascade rates i...
This letter exploits the radial alignment between the Parker Solar Probe and BepiColombo in late 202...
We study the radial evolution, from 0.1 AU to the Earth, of a homogeneous recurrent fast wind, comin...
Parker Solar Probe and Solar Orbiter data are used to investigate the radial evolution of magnetic t...
We present a first theoretical modeling of joint Parker Solar Probe (PSP) - Metis/Solar Orbiter (Sol...
Although the interplanetary magnetic-field variability has been extensively investigated in situ usi...
Magnetic clouds are large-scale transient structures in the solar wind with low plasma $\beta$, low-...
International audienceContext. Parker Solar Probe (PSP) measures the magnetic field and plasma param...
Parker Solar Probe (PSP) observations during its first encounter at 35.7 R ⊙ have shown the presence...
Understanding the magnetic connections from the Sun to interplanetary space is crucial for linking i...
International audienceAt the end of 2020 September, the Parker Solar Probe (PSP) and BepiColombo wer...
We investigated the incompressible and compressible magnetohydrodynamic (MHD) energy cascade rates i...
This letter exploits the radial alignment between the Parker Solar Probe and BepiColombo in late 202...
We study the radial evolution, from 0.1 AU to the Earth, of a homogeneous recurrent fast wind, comin...
Parker Solar Probe and Solar Orbiter data are used to investigate the radial evolution of magnetic t...
We present a first theoretical modeling of joint Parker Solar Probe (PSP) - Metis/Solar Orbiter (Sol...
Although the interplanetary magnetic-field variability has been extensively investigated in situ usi...
Magnetic clouds are large-scale transient structures in the solar wind with low plasma $\beta$, low-...
International audienceContext. Parker Solar Probe (PSP) measures the magnetic field and plasma param...
Parker Solar Probe (PSP) observations during its first encounter at 35.7 R ⊙ have shown the presence...
Understanding the magnetic connections from the Sun to interplanetary space is crucial for linking i...
International audienceAt the end of 2020 September, the Parker Solar Probe (PSP) and BepiColombo wer...
We investigated the incompressible and compressible magnetohydrodynamic (MHD) energy cascade rates i...
This letter exploits the radial alignment between the Parker Solar Probe and BepiColombo in late 202...
We study the radial evolution, from 0.1 AU to the Earth, of a homogeneous recurrent fast wind, comin...