SIMBAD references

2021ApJ...921..143C - Astrophys. J., 921, 143-143 (2021/November-2)

Core-collapse supernovae: from neutrino-driven 1D explosions to light curves and spectra.

CURTIS S., WOLFE N., FROHLICH C., MILLER J.M., WOLLAEGER R. and EBINGER K.

Abstract (from CDS):

We present bolometric and broadband light curves and spectra for a suite of core-collapse supernova models exploded self-consistently in spherical symmetry within the PUSH framework. We analyze broad trends in these light curves and categorize them based on morphology. We find that these morphological categories relate simply to the progenitor radius and mass of the hydrogen envelope. We present a proof-of-concept sensitive-variable analysis, indicating that an important determining factor in the properties of a light curve within a given category is 56Ni mass. We follow spectra from the photospheric to the nebular phase. These spectra show characteristic iron-line blanketing at short wavelengths and Doppler-shifted Fe II and Ti II absorption lines. To enable this analysis, we develop a first-of-its-kind pipeline from a massive progenitor model, through a self-consistent explosion in spherical symmetry, to electromagnetic counterparts. This opens the door to more detailed analyses of the collective properties of these observables. We provide a machine-readable database of our light curves and spectra online at go.ncsu.edu/astrodata.

Abstract Copyright: © 2021. The American Astronomical Society. All rights reserved.

Journal keyword(s): Core-collapse supernovae - Type II supernovae - Type Ib supernovae - Type Ic supernovae - Light curves - Light curve classification - Transient sources - Time domain astronomy - High energy astrophysics - Radiative transfer - Radiative transfer simulations

Simbad objects: 6

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