International audienceIntermediate-mass stars (7-11 M⊙) form degenerate ONe cores following carbon burning. In some cases the cores grow dense enough to trigger electron capture on various nuclei. The double electron capture 20Ne(e-, v e)20F(e-, νe )20O releases enough heat to trigger runaway oxygen burning. Depending on the conditions at ignition the outcome is either a collapse to a neutron star or a thermonuclear explosion with an ONeFe remnant. We have investigated the impact of two forbidden transitions on the ignition conditions using the MESA stellar evolution code. The 0+ → 2+ transition between the ground states of 20Ne and 20F has been measured experimentally and is found to decrease the ignition density while pushing the point of...
Electron capture on 20Ne is thought to play a crucial role in the final evolution of electron-degene...
We investigate the consequences of a new phenomenological model prediction of strongly reduced low-e...
The explosion mechanism of electron-capture supernovae (ECSNe) remains equivocal: it is not complete...
Intermediate mass stars develop a degenerate core constituted of O, Ne and Mg during their evolutio...
A significant fraction of stars between 7 and 11 solar masses are thought to become supernovae, but ...
A significant fraction of stars between 7 and 11 solar masses are thought to become supernovae, but ...
Mass-accreting electron-degenerate stellar cores that are composed primarily of the carbon-burning a...
A significant fraction of stars between 7 and 11 solar masses are thought to become supernovae, but ...
Stars with an initial mass of roughly seven to eleven times the mass of our sun are known as interme...
Context. When stripped from their hydrogen-rich envelopes, stars with initial masses between ∼7 and ...
We systematically examine how the presence in a binary affects the final core structure of a massive...
We systematically examine how the presence in a binary affects the final core structure of a massive...
In the ONeMg cores of $8.8-9.5~{\rm M}_\odot$ stars, neon and oxygen burning is ignited off-center. ...
The explosion mechanism of electron-capture supernovae (ECSNe) remains equivocal: it is not complete...
Abstract. We present a new set of electron (e−) capture and β-decay rates that improves previous cal...
Electron capture on 20Ne is thought to play a crucial role in the final evolution of electron-degene...
We investigate the consequences of a new phenomenological model prediction of strongly reduced low-e...
The explosion mechanism of electron-capture supernovae (ECSNe) remains equivocal: it is not complete...
Intermediate mass stars develop a degenerate core constituted of O, Ne and Mg during their evolutio...
A significant fraction of stars between 7 and 11 solar masses are thought to become supernovae, but ...
A significant fraction of stars between 7 and 11 solar masses are thought to become supernovae, but ...
Mass-accreting electron-degenerate stellar cores that are composed primarily of the carbon-burning a...
A significant fraction of stars between 7 and 11 solar masses are thought to become supernovae, but ...
Stars with an initial mass of roughly seven to eleven times the mass of our sun are known as interme...
Context. When stripped from their hydrogen-rich envelopes, stars with initial masses between ∼7 and ...
We systematically examine how the presence in a binary affects the final core structure of a massive...
We systematically examine how the presence in a binary affects the final core structure of a massive...
In the ONeMg cores of $8.8-9.5~{\rm M}_\odot$ stars, neon and oxygen burning is ignited off-center. ...
The explosion mechanism of electron-capture supernovae (ECSNe) remains equivocal: it is not complete...
Abstract. We present a new set of electron (e−) capture and β-decay rates that improves previous cal...
Electron capture on 20Ne is thought to play a crucial role in the final evolution of electron-degene...
We investigate the consequences of a new phenomenological model prediction of strongly reduced low-e...
The explosion mechanism of electron-capture supernovae (ECSNe) remains equivocal: it is not complete...