Utilizing non-local thermodynamic equilibrium time-dependent radiative-transfer calculations, we investigate the impact of mixing and non-thermal processes associated with radioactive decay on Type IIb/Ib/Ic supernova (SN IIb/Ib/Ic) light curves and spectra. Starting with short-period binary models of ≾5M_⊙ helium-rich stars, originally 18 and 25M_⊙ on the main sequence, we produce 1.2B ejecta which we artificially mix to alter the chemical stratification. While the total ^(56)Ni mass influences the light-curve peak, the spatial distribution of ^(56)Ni, controlled by mixing processes, impacts both the multiband light curves and spectra. With enhanced γ-ray escape. Non-thermal electrons, crucial for the production of He_I lines, deposit ...
Much uncertainty surrounds the origin of superluminous supernovae (SNe). Motivated by the discovery ...
Following our recent work on Type II supernovae (SNe), we present a set of 1D nonlocal thermodynamic...
Much difficulty has so far prevented the emergence of a consistent scenario for the origin of Type I...
Utilizing non-local thermodynamic equilibrium time-dependent radiative-transfer calculations, we inv...
International audienceUtilizing non-local thermodynamic equilibrium time-dependent radiative-transfe...
International audienceUtilizing non-local thermodynamic equilibrium time-dependent radiative-transfe...
We present an extended grid of multi-epoch 1D nonlocal thermodynamic equilibrium radiative transfer ...
International audienceWe present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-...
International audienceWe present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-...
International audienceWe present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-...
International audienceFollowing our recent work on Type II supernovae (SNe), we present a set of 1D ...
We present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-transfer simulations o...
We present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-transfer simulations o...
We present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-transfer simulations o...
Much uncertainty surrounds the origin of superluminous supernovae (SNe). Motivated by the discovery ...
Much uncertainty surrounds the origin of superluminous supernovae (SNe). Motivated by the discovery ...
Following our recent work on Type II supernovae (SNe), we present a set of 1D nonlocal thermodynamic...
Much difficulty has so far prevented the emergence of a consistent scenario for the origin of Type I...
Utilizing non-local thermodynamic equilibrium time-dependent radiative-transfer calculations, we inv...
International audienceUtilizing non-local thermodynamic equilibrium time-dependent radiative-transfe...
International audienceUtilizing non-local thermodynamic equilibrium time-dependent radiative-transfe...
We present an extended grid of multi-epoch 1D nonlocal thermodynamic equilibrium radiative transfer ...
International audienceWe present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-...
International audienceWe present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-...
International audienceWe present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-...
International audienceFollowing our recent work on Type II supernovae (SNe), we present a set of 1D ...
We present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-transfer simulations o...
We present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-transfer simulations o...
We present non-Local Thermodynamic Equilibrium (LTE) time-dependent radiative-transfer simulations o...
Much uncertainty surrounds the origin of superluminous supernovae (SNe). Motivated by the discovery ...
Much uncertainty surrounds the origin of superluminous supernovae (SNe). Motivated by the discovery ...
Following our recent work on Type II supernovae (SNe), we present a set of 1D nonlocal thermodynamic...
Much difficulty has so far prevented the emergence of a consistent scenario for the origin of Type I...