Early observations of supernovae (SNe) indicate that enhanced mass-loss and pre-SN outbursts may occur in progenitors of many types of SNe. We investigate the role of energy transport via waves driven by vigorous convection during late-stage nuclear burning of otherwise typical 15 M_⊙ red supergiant SN progenitors. Using MESA stellar evolution models including 1D hydrodynamics, we find that waves carry ∼10^7 L_⊙ of power from the core to the envelope during core neon/oxygen burning in the final years before core collapse. The waves damp via shocks and radiative diffusion at the base of the hydrogen envelope, which heats up fast enough to launch a pressure wave into the overlying envelope that steepens into a weak shock near the stellar surf...
Abstract Eruptive mass loss likely produces the energetic outbursts observed from som...
Massive stars with a core-halo structure are interesting objects for stellar physics and hydrodynami...
Observations of the transient, explosive deaths of massive stars are well-poised to provide insight ...
Early observations of supernovae (SNe) indicate that enhanced mass-loss and pre-SN outbursts may occ...
Pre-supernova (SN) outbursts from massive stars may be driven by hydrodynamical wave energy emerging...
The activity of a massive star approaching core-collapse can strongly affect the appearance of the s...
The activity of a massive star approaching core-collapse can strongly affect the appearance of the s...
Pre-supernova (SN) outbursts from massive stars may be driven by hydrodynamical wave energy emerging...
Pre-supernova (SN) outbursts from massive stars may be driven by hydrodynamical wave energy emerging...
Many Type II supernovae (SNe) show hot early (~30 days) emission, and a diversity in their light cur...
In a substantial number of core-collapse supernovae, early-time interaction indicates a dense circum...
Many Type II supernovae (SNe) show hot early (~30 days) emission, and a diversity in their light cur...
Supernovae (SNe) powered by interaction with circumstellar material provide evidence for intense ste...
MESA inlists associated with Fuller (2017). MESA version 7624. Publication DOI: 10.1093/mnras/stx13...
Abstract Eruptive mass loss likely produces the energetic outbursts observed from som...
Abstract Eruptive mass loss likely produces the energetic outbursts observed from som...
Massive stars with a core-halo structure are interesting objects for stellar physics and hydrodynami...
Observations of the transient, explosive deaths of massive stars are well-poised to provide insight ...
Early observations of supernovae (SNe) indicate that enhanced mass-loss and pre-SN outbursts may occ...
Pre-supernova (SN) outbursts from massive stars may be driven by hydrodynamical wave energy emerging...
The activity of a massive star approaching core-collapse can strongly affect the appearance of the s...
The activity of a massive star approaching core-collapse can strongly affect the appearance of the s...
Pre-supernova (SN) outbursts from massive stars may be driven by hydrodynamical wave energy emerging...
Pre-supernova (SN) outbursts from massive stars may be driven by hydrodynamical wave energy emerging...
Many Type II supernovae (SNe) show hot early (~30 days) emission, and a diversity in their light cur...
In a substantial number of core-collapse supernovae, early-time interaction indicates a dense circum...
Many Type II supernovae (SNe) show hot early (~30 days) emission, and a diversity in their light cur...
Supernovae (SNe) powered by interaction with circumstellar material provide evidence for intense ste...
MESA inlists associated with Fuller (2017). MESA version 7624. Publication DOI: 10.1093/mnras/stx13...
Abstract Eruptive mass loss likely produces the energetic outbursts observed from som...
Abstract Eruptive mass loss likely produces the energetic outbursts observed from som...
Massive stars with a core-halo structure are interesting objects for stellar physics and hydrodynami...
Observations of the transient, explosive deaths of massive stars are well-poised to provide insight ...