International audienceThe \emph{Solar Orbiter} (\emph{SolO}) and \emph{Parker Solar Probe} (\emph{PSP}) missions have opened up new challenges for the heliospheric scientific community. Their proximity to the Sun and their high quality measurements allow us to investigate, for the first time, potential sources for the solar wind plasma measured in situ. More accurate estimates of magnetic connectivities from spacecraft to the Sun are required to support science and operations for these missions. We present a methodology to systematically compare coronal and heliospheric models against white-light (WL) observations. White-light images from the SOlar and Heliospheric Observatory (\emph{SoHO}) are processed to unveil the faint structures of th...
We compare magnetic field measurements taken by the FIELDS instrument on Parker Solar Probe (PSP) du...
The Heliospheric Imagers (HI) onboard the two spacecraft of the Solar Terrestrial Relations Observat...
The Sun’s atmosphere is a complex and dynamic magnetized plasma and extends all theway from its visi...
International audienceThe \emph{Solar Orbiter} (\emph{SolO}) and \emph{Parker Solar Probe} (\emph{PS...
A prime research focus of the upcoming Solar Probe Plus and Solar Orbiter missions will be to determ...
International audienceThe physical mechanisms that produce the slow solar wind are still highly deba...
Context. The launch of Parker Solar Probe (PSP) in 2018, followed by Solar Orbiter (SO) in February ...
Our understanding of the formation and evolution of the corona and the heliosphere is linked to our ...
Despite the general agreement that the magnetic field of the Sun dominates the structure and dynamic...
Context. The launch of Parker Solar Probe (PSP) in 2018, followed by Solar Orbiter (SO) in February ...
International audienceWe compare Parker Solar Probe (PSP) FIELDS early magnetic field measurements t...
We compare magnetic field measurements taken by the FIELDS instrument on Parker Solar Probe (PSP) du...
The Heliospheric Imagers (HI) onboard the two spacecraft of the Solar Terrestrial Relations Observat...
The Sun’s atmosphere is a complex and dynamic magnetized plasma and extends all theway from its visi...
International audienceThe \emph{Solar Orbiter} (\emph{SolO}) and \emph{Parker Solar Probe} (\emph{PS...
A prime research focus of the upcoming Solar Probe Plus and Solar Orbiter missions will be to determ...
International audienceThe physical mechanisms that produce the slow solar wind are still highly deba...
Context. The launch of Parker Solar Probe (PSP) in 2018, followed by Solar Orbiter (SO) in February ...
Our understanding of the formation and evolution of the corona and the heliosphere is linked to our ...
Despite the general agreement that the magnetic field of the Sun dominates the structure and dynamic...
Context. The launch of Parker Solar Probe (PSP) in 2018, followed by Solar Orbiter (SO) in February ...
International audienceWe compare Parker Solar Probe (PSP) FIELDS early magnetic field measurements t...
We compare magnetic field measurements taken by the FIELDS instrument on Parker Solar Probe (PSP) du...
The Heliospheric Imagers (HI) onboard the two spacecraft of the Solar Terrestrial Relations Observat...
The Sun’s atmosphere is a complex and dynamic magnetized plasma and extends all theway from its visi...