International audienceContext. Magnetic helicity is one of the invariants in ideal magnetohydrodynamics, and its spectral evolution has a substantial amount of information to reveal the mechanism that are behind turbulence in space and astrophysical plasmas.Aims. The goal of our study is to observationally characterize the magnetic helicity evolution in the inner heliosphere by resolving the helicity transport in a scale-wise fashion in the spectral domain. Methods. The evolution of the magnetic helicity spectrum in the inner heliosphere was tracked using a radial alignment event achieved by Parker Solar Probe at a distance of 0.17 astronomical units (AU) from the Sun and BepiColombo at 0.58 AU with a delay of about 3.5 days.Results. The re...
International audienceThe first radial alignment between Parker Solar Probe and Solar Orbiter spacec...
We analyze the evolution of the interplanetary magnetic field spatial structure by examining the inn...
For over four decades, low frequency plasma and electromagnetic fluctuations have been observed in t...
International audienceContext. Magnetic helicity is one of the invariants in ideal magnetohydrodynam...
Context. Magnetic helicity is one of the invariants in ideal magnetohydrodynamics, and its spectral ...
Context. Obtaining observational constraints on the role of turbulent effects for the solar dynamo i...
| openaire: EC/H2020/818665/EU//UniSDyn Funding Information: Acknowledgements. MJK acknowledges the ...
The rst observational signature of magnetic helicity in the solar atmosphere (sunspot whirls) was di...
The first observational signature of magnetic helicity in the solar atmosphere (sunspot whirls) was ...
Parker Solar Probe and Solar Orbiter data are used to investigate the radial evolution of magnetic t...
International audienceMagnetic helicity quantifies how the magnetic field is sheared and twisted com...
Abstract Magnetic fields of laboratory, planetary, stellar, and galactic plasmas commonly exhibit si...
International audienceThe first radial alignment between Parker Solar Probe and Solar Orbiter spacec...
We analyze the evolution of the interplanetary magnetic field spatial structure by examining the inn...
For over four decades, low frequency plasma and electromagnetic fluctuations have been observed in t...
International audienceContext. Magnetic helicity is one of the invariants in ideal magnetohydrodynam...
Context. Magnetic helicity is one of the invariants in ideal magnetohydrodynamics, and its spectral ...
Context. Obtaining observational constraints on the role of turbulent effects for the solar dynamo i...
| openaire: EC/H2020/818665/EU//UniSDyn Funding Information: Acknowledgements. MJK acknowledges the ...
The rst observational signature of magnetic helicity in the solar atmosphere (sunspot whirls) was di...
The first observational signature of magnetic helicity in the solar atmosphere (sunspot whirls) was ...
Parker Solar Probe and Solar Orbiter data are used to investigate the radial evolution of magnetic t...
International audienceMagnetic helicity quantifies how the magnetic field is sheared and twisted com...
Abstract Magnetic fields of laboratory, planetary, stellar, and galactic plasmas commonly exhibit si...
International audienceThe first radial alignment between Parker Solar Probe and Solar Orbiter spacec...
We analyze the evolution of the interplanetary magnetic field spatial structure by examining the inn...
For over four decades, low frequency plasma and electromagnetic fluctuations have been observed in t...