MJ and ACC acknowledge support from STFC consolidated grant number ST/R000824/1. JFD acknowledges funding from the European Research Council (ERC) under the H2020 research and innovation programme (grant agreement 740651 NewWorlds).The structure of a star’s coronal magnetic field is a fundamental property that governs the high-energy emission from the hot coronal gas and the loss of mass and angular momentum in the stellar wind. It is, however, extremely difficult to measure. We report a new method to trace this structure in rapidly-rotating young convective stars, using the cool gas trapped on coronal field lines as markers. This gas forms “slingshot prominences” which appear as transient absorption features in H-α. By using different meth...
The definitive version is available at www.blackwell-synergy.com '. Copyright Blackwell PublishingWe...
This work benefited from the support of Programme National de Physique Stellaire (PNPS). T.C. would ...
We acknowledge STFC (ST/M001296/1) and H2020 (682393).The observational signatures of prominences ha...
The structure of a star’s coronal magnetic field is a fundamental property that governs the high-ene...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Whilst "sl...
We acknowledge funding from the Science and Technology Facilities Council consolidated grant ST/R000...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Observatio...
The authors acknowledge support from STFC.We present models for the magnetic support of the ‘slingsh...
Observations of rapidly-rotating cool stars often show coronal slingshot prominences that remove mas...
International audienceABSTRACT Whilst ‘slingshot’ prominences have been observed on M-dwarfs, most i...
Whilst "slingshot" prominences have been observed on M-dwarfs, most if not all theoretical studies h...
Funding: UK STFC grant (ST/M001296/1) (CVD, MJ).Although the present-day Sun rotates too slowly to e...
We present a new model for the coronal structure of rapidly rotating solar-type stars. The presence ...
Observations of stellar prominences on young rapidly rotating stars provide unique probes of their m...
It has been proposed that slingshot prominences may be a mass and angular momentum loss mechanism fo...
The definitive version is available at www.blackwell-synergy.com '. Copyright Blackwell PublishingWe...
This work benefited from the support of Programme National de Physique Stellaire (PNPS). T.C. would ...
We acknowledge STFC (ST/M001296/1) and H2020 (682393).The observational signatures of prominences ha...
The structure of a star’s coronal magnetic field is a fundamental property that governs the high-ene...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Whilst "sl...
We acknowledge funding from the Science and Technology Facilities Council consolidated grant ST/R000...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Observatio...
The authors acknowledge support from STFC.We present models for the magnetic support of the ‘slingsh...
Observations of rapidly-rotating cool stars often show coronal slingshot prominences that remove mas...
International audienceABSTRACT Whilst ‘slingshot’ prominences have been observed on M-dwarfs, most i...
Whilst "slingshot" prominences have been observed on M-dwarfs, most if not all theoretical studies h...
Funding: UK STFC grant (ST/M001296/1) (CVD, MJ).Although the present-day Sun rotates too slowly to e...
We present a new model for the coronal structure of rapidly rotating solar-type stars. The presence ...
Observations of stellar prominences on young rapidly rotating stars provide unique probes of their m...
It has been proposed that slingshot prominences may be a mass and angular momentum loss mechanism fo...
The definitive version is available at www.blackwell-synergy.com '. Copyright Blackwell PublishingWe...
This work benefited from the support of Programme National de Physique Stellaire (PNPS). T.C. would ...
We acknowledge STFC (ST/M001296/1) and H2020 (682393).The observational signatures of prominences ha...