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Stars in the mass range from 8 to 10 solar masses are expected to produce one of two types of supernovae (SNe), either electron-capture supernovae (ECSNe) or core-collapse supernovae (CCSNe), depending on their previous evolution. Either of…

Solar and Stellar Astrophysics · Physics 2021-02-17 Alexandra Kozyreva , Petr Baklanov , Samuel Jones , Georg Stockinger , Hans-Thomas Janka

Type Ia supernovae are bright stellar explosions thought to occur when a thermonuclear runaway consumes roughly a solar mass of degenerate stellar material. These events produce and disseminate iron-peak elements, and properties of their…

The connection between long Gamma Ray Bursts (GRBs) and Supernovae (SNe), have been established through the well observed cases of GRB980425/SN 1998bw, GRB030329/SN 2003dh and GRB031203/SN 2003lw. These events can be explained as the prompt…

Astrophysics · Physics 2007-07-17 Ken'ichi Nomoto , Masaomi Tanaka , Nozomu Tominaga , Keiichi Maeda , Paolo A. Mazzali

Generally accepted scheme distinguishes two main classes of supernovae (SNe): Ia resulting from the old stellar population (deflagration of a white dwarf in close binary systems), and SNe of type II and Ib/c whose ancestors are young…

Astrophysics · Physics 2008-11-26 Bojan Arbutina

Type Ia supernovae are thought to be the outcome of the thermonuclear explosion of a carbon/oxygen white dwarf in a close binary system. Their optical light curve is powered by thermalized gamma-rays produced by the radioactive decay of…

High Energy Astrophysical Phenomena · Physics 2017-06-21 J. Isern , E. Bravo , P. Jean , J. Knödlseder

Type Ia supernovae (SNe Ia) correspond to the thermonuclear explosion of a carbon-oxygen white dwarf (C-O WD) star in a binary system, triggered by the accretion of material from another star, or the merger/collision with a secondary WD.…

High Energy Astrophysical Phenomena · Physics 2025-06-06 Stéphane Blondin

Ultra-stripped and Type Ibn supernovae (USSNe and SNe Ibn, respectively) are fast-evolving, hydrogen-poor transients that often show signs of interaction with dense circumstellar material (CSM). Wu & Fuller (2022) identify a mass range for…

High Energy Astrophysical Phenomena · Physics 2025-03-13 Annastasia Haynie , Samantha C. Wu , Anthony L. Piro , Jim Fuller

Since the discovery of SN (supernova) 1987A, the number of Type II-peculiar SNe has grown, revealing a rich diversity in photometric and spectroscopic properties. In this study, using a single 15Msun low-metallicity progenitor that dies as…

Solar and Stellar Astrophysics · Physics 2018-12-20 Luc Dessart , D. John Hillier

Many Type IIb supernovae (SNe) show a prominent additional early peak in their light curves, which is generally thought to be due to the shock cooling of extended hydrogen-rich material surrounding the helium core of the exploding star. The…

High Energy Astrophysical Phenomena · Physics 2017-09-13 Anthony L. Piro , Marc Muhleisen , Iair Arcavi , David J. Sand , Leonardo Tartaglia , Stefano Valenti

The discovery of SN 2018gep (ZTF18abukavn) challenged our understanding of the late-phase evolution of massive stars and their supernovae (SNe). The fast rise in luminosity of this SN (spectroscopically classified as a broad-lined Type Ic…

High Energy Astrophysical Phenomena · Physics 2021-10-20 Shing-Chi Leung , Jim Fuller , Ken'ichi Nomoto

We present a systematic study of Type II supernovae (SNe II) originating from progenitors with effective temperatures ($T_{\rm eff}$) and luminosities closely resembling red supergiants (RSGs) observed in pre-SN images and in the Galaxy.…

High Energy Astrophysical Phenomena · Physics 2024-09-16 Qiliang Fang , Keiichi Maeda , Haonan Ye , Takashi Moriya , Tatsuya Matsumoto

We present optical and near infrared observations of the type IIb supernova (SN) 2011fu from a few days to $\sim300$ d after explosion. The SN presents a double-peaked light curve (LC) similar to that of SN 1993J, although more luminous and…

We present observations of SN 2015bn (= PS15ae = CSS141223-113342+004332 = MLS150211-113342+004333), a Type I superluminous supernova (SLSN) at redshift $z=0.1136$. As well as being one of the closest SLSNe I yet discovered, it is…

Type II supernovae (SNe II) show strong hydrogen features in their spectra throughout their whole evolution while type IIb supernovae (SNe IIb) spectra evolve from dominant hydrogen lines at early times to increasingly strong helium…

The shape of the light curve peak of radioactive--powered core--collapse "stripped--envelope" supernovae constrains the ejecta mass, nickel mass, and kinetic energy by the brightness and diffusion time for a given opacity and observed…

Solar and Stellar Astrophysics · Physics 2015-06-23 J. Craig Wheeler , V. Johnson , A. Clocchiatti

Using simple arguments based on photometric light curves and velocity evolution, we propose that some stripped envelope supernovae (SNe) show signs that a significant fraction of their helium is effectively transparent. The main pieces of…

High Energy Astrophysical Phenomena · Physics 2015-06-22 Anthony L. Piro , Viktoriya S. Morozova

The majority of thermonuclear explosions in the Universe seem to proceed in a rather standardised way, as explosions of carbon-oxygen (CO) white dwarfs in binary systems, leading to 'normal' Type Ia supernovae (SNe Ia). However, over the…

High Energy Astrophysical Phenomena · Physics 2018-04-25 Stefan Taubenberger

Photometry is the most easily acquired information about supernovae. The light curves constructed from regular imaging provide signatures not only for the energy input, the radiation escape, the local environment and the progenitor stars,…

Astrophysics · Physics 2016-04-13 Bruno Leibundgut , Nicholas B. Suntzeff

Supernovae of type IIP are marked by the long plateau seen in their optical light curves. The plateau is believed to be the result of a recombination wave that propagates through the outflowing massive hydrogen envelope. Here, we…

High Energy Astrophysical Phenomena · Physics 2014-04-28 Tomer Goldfriend , Ehud Nakar , Re'em Sari

For the initial mass range (140 < M < 260 Msun) stars die in a thermonuclear runaway triggered by the pair-production instability. The supernovae they make can be remarkably energetic (up to ~10^53 ergs) and synthesize considerable amounts…

High Energy Astrophysical Phenomena · Physics 2015-05-27 Daniel Kasen , S. E. Woosley , Alexander Heger