It has been proposed that slingshot prominences may be a mass and angular momentum loss mechanism for rapidly rotating young stars. Stellar evolution models currently rely only on the wind as the angular momentum loss mechanism and do not include prominences. These models often require more angular momentum to be removed than the wind allows, and prominence ejection may hold at least part of the answer. This thesis aims to investigate the locations of prominence formation through mathematical modelling. The magnetic field structures that could support prominences are investigated, typically using two models: a magnetohydrostatic model and a stability method. The distributions of prominences around the star are calculated and, where possible...
We present a general method for determining the locations of stable gravitational centrifugal potent...
Magnetic confinement of material is observed on both high and low mass stars. On low mass stars, thi...
In this thesis I study the magnetic activity of young stars via observations of stellar prominences ...
It has been proposed that slingshot prominences may be a mass and angular momentum loss mechanism fo...
Whilst "slingshot" prominences have been observed on M-dwarfs, most if not all theoretical studies h...
International audienceABSTRACT Whilst ‘slingshot’ prominences have been observed on M-dwarfs, most i...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Whilst "sl...
We present models for the magnetic support of the ‘slingshot prominences’ observed in the coronae of...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Observatio...
Prominences, cool condensations of coronal plasma, have been observed on many types of star. Rapidly...
It has been known for some time now that rapidly-rotating solar-like stars possess the stellar equiv...
The structure of a star’s coronal magnetic field is a fundamental property that governs the high-ene...
We acknowledge STFC (ST/M001296/1) and H2020 (682393).The observational signatures of prominences ha...
MJ and ACC acknowledge support from STFC consolidated grant number ST/R000824/1. JFD acknowledges fu...
Observations of rapidly-rotating cool stars often show coronal slingshot prominences that remove mas...
We present a general method for determining the locations of stable gravitational centrifugal potent...
Magnetic confinement of material is observed on both high and low mass stars. On low mass stars, thi...
In this thesis I study the magnetic activity of young stars via observations of stellar prominences ...
It has been proposed that slingshot prominences may be a mass and angular momentum loss mechanism fo...
Whilst "slingshot" prominences have been observed on M-dwarfs, most if not all theoretical studies h...
International audienceABSTRACT Whilst ‘slingshot’ prominences have been observed on M-dwarfs, most i...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Whilst "sl...
We present models for the magnetic support of the ‘slingshot prominences’ observed in the coronae of...
Funding: The authors acknowledge support from STFC consolidated grant number ST/R000824/1.Observatio...
Prominences, cool condensations of coronal plasma, have been observed on many types of star. Rapidly...
It has been known for some time now that rapidly-rotating solar-like stars possess the stellar equiv...
The structure of a star’s coronal magnetic field is a fundamental property that governs the high-ene...
We acknowledge STFC (ST/M001296/1) and H2020 (682393).The observational signatures of prominences ha...
MJ and ACC acknowledge support from STFC consolidated grant number ST/R000824/1. JFD acknowledges fu...
Observations of rapidly-rotating cool stars often show coronal slingshot prominences that remove mas...
We present a general method for determining the locations of stable gravitational centrifugal potent...
Magnetic confinement of material is observed on both high and low mass stars. On low mass stars, thi...
In this thesis I study the magnetic activity of young stars via observations of stellar prominences ...