MOFAT applied to SN2024ggi shows CO triggering inner SiO formation with a receding edge, order-of-magnitude mass drop, clumping signatures, and no dust formation.
o hlich C., Ebinger K., Eichler M., Casanova J., Liebend \
5 Pith papers cite this work, alongside 115 external citations. Polarity classification is still indexing.
representative citing papers
The authors implement and validate nuclear networks coupled to GRRMHD with M1 neutrino transport in Gmunu, showing effects on core-collapse supernova shock revival and composition.
Across about 1,500 core-collapse simulations, neutrino heating rises steeply with progenitor compactness, so high-compactness stars revive their stalled shock and explode, contrary to many 1D explodability recipes.
In axisymmetric simulations of a 60 solar mass progenitor, a black hole forms within about a second of shock revival yet the supernova still explodes; final explosion energy ranges from 0.06 to 0.72 times 10^51 erg, ejecta mass from 21.7 to 23.1 solar masses, and 56Ni yield from 0 to 0.018 solar…
Classic piston and thermal-bomb triggers fail to reproduce the explosion-energy versus nickel-yield correlation of neutrino-driven 1D supernova models, while special-trajectory pistons cure fallback but only by importing neutrino-model results.
citing papers explorer
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Toward First-Principles Multi-Messenger Predictions: Coupling Nuclear Networks with GR Radiation-MHD in {\tt Gmunu}
The authors implement and validate nuclear networks coupled to GRRMHD with M1 neutrino transport in Gmunu, showing effects on core-collapse supernova shock revival and composition.
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Neutrino Heating in 1D, 2D, and 3D core-collapse supernovae: characterizing the explosion of high-compactness stars
Across about 1,500 core-collapse simulations, neutrino heating rises steeply with progenitor compactness, so high-compactness stars revive their stalled shock and explode, contrary to many 1D explodability recipes.
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Comparison of Three Methods for Triggering Core-collapse Supernova Explosions in Spherical Symmetry
Classic piston and thermal-bomb triggers fail to reproduce the explosion-energy versus nickel-yield correlation of neutrino-driven 1D supernova models, while special-trajectory pistons cure fallback but only by importing neutrino-model results.