The most extended, closed magnetic loops inferred on T Tauri stars confine hot, X-ray-emitting plasma at distances from the stellar surface beyond the X-ray-bright corona and closed large-scale field, distances comparable to the corotation radius. Mechanical equilibrium models have shown that dense condensations, or 'slingshot prominences', can rise to great heights due to their density and temperatures cooler than their environs. On T Tauri stars, however, we detect plasma at temperatures hotter than the ambient coronal temperature. By previous model results, these loops should not reach the inferred heights of tens of stellar radii where they likely no longer have the support of the external field against magnetic tension. In this work, w...
International audienceContext. According to the magnetospheric accretion model, hot spots form on th...
We have modelled the X-ray emission of T Tauri stars assuming that they have isothermal, magneticall...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Magnetic c...
The most extended, closed magnetic loops inferred on T Tauri stars confine hot, X-ray-emitting plasm...
The most extended, closed magnetic loops inferred on T Tauri stars confine hot, X‐ray‐emitting plasm...
We present a new model for the coronal structure of rapidly rotating solar-type stars. The presence ...
We present models for the magnetic support of the ‘slingshot prominences’ observed in the coronae of...
I develop the first magnetospheric accretion model to take account of the observed complexity of T T...
International audienceContext. Classical T Tauri stars (CTTs) magnetically interact with their surro...
By means of numerical simulations, we investigate magnetized stellar winds of pre-main-sequence star...
The magnetic fields of young stars set their coronal properties and control their spin evolution via...
Magnetic confinement of dense plasma is found in the magnetospheres of both high and low mass stars....
The magnetic fields of young stars set their coronal properties and control their spin evolution via...
International audienceContext. According to the magnetospheric accretion model, hot spots form on th...
We have modelled the X-ray emission of T Tauri stars assuming that they have isothermal, magneticall...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Magnetic c...
The most extended, closed magnetic loops inferred on T Tauri stars confine hot, X-ray-emitting plasm...
The most extended, closed magnetic loops inferred on T Tauri stars confine hot, X‐ray‐emitting plasm...
We present a new model for the coronal structure of rapidly rotating solar-type stars. The presence ...
We present models for the magnetic support of the ‘slingshot prominences’ observed in the coronae of...
I develop the first magnetospheric accretion model to take account of the observed complexity of T T...
International audienceContext. Classical T Tauri stars (CTTs) magnetically interact with their surro...
By means of numerical simulations, we investigate magnetized stellar winds of pre-main-sequence star...
The magnetic fields of young stars set their coronal properties and control their spin evolution via...
Magnetic confinement of dense plasma is found in the magnetospheres of both high and low mass stars....
The magnetic fields of young stars set their coronal properties and control their spin evolution via...
International audienceContext. According to the magnetospheric accretion model, hot spots form on th...
We have modelled the X-ray emission of T Tauri stars assuming that they have isothermal, magneticall...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Magnetic c...