The issue of which stars may reach the conditions of electron/positron pair-formation instability is of importance to understand the final evolution both of the first stars and of contemporary stars. The criterion to enter the pair-instability regime in density and temperature is basically controlled by the mass of the oxygen core. The main-sequence masses that produce a given oxygen core mass are, in turn, dependent on metallicity, mass loss, and convective and rotationally induced mixing. We examine the evolution of massive stars to determine the minimum main-sequence mass that can encounter pair-instability effects, either a pulsational pair-instability supernova (PPISN) or a full-fledged pair-instability supernova (PISN). We concentrate...
Aims.Pair creation supernovae (PCSN) are thought to be produced from very massive low metallicity s...
Recent stellar evolution models show consistently that very massive metal-free stars evolve into red...
Context. So-called superluminous supernovae have been recently discovered in the local Universe. It ...
The issue of which stars may reach the conditions of electron/positron pair-formation instability is...
In certain mass ranges, massive stars can undergo a violent pulsation triggered by the electron/posi...
We calculate the evolution of massive stars, which undergo pulsational pair-instability (PPI) when t...
Nonrotating, zero metallicity stars with initial masses 140 < M < 260 solar masses are expected to e...
In recent years, the viability of the pair-instability supernova (PISN) scenario for explaining supe...
Theoretical models predict that some of the first stars ended their lives as extremely energetic pai...
Very massive primordial stars (140 M < M < 260 M) are supposed to end their lives as PISN. Such an e...
Context. In recent observations of extremely metal-poor, low-mass, starburst galaxies, almost solar ...
We study the effects of rotation on the dynamics, energetics, and Ni-56 production of pair instabili...
Near-solar metallicity (and low-redshift) pair-instability supernova (PISN) candidates challenge ste...
The recently discovered bright Type II supernova OGLE14-073 evolved very slowly. The light curve ro...
International audienceAccording to theoretical models, massive stars with masses within the 100–250 ...
Aims.Pair creation supernovae (PCSN) are thought to be produced from very massive low metallicity s...
Recent stellar evolution models show consistently that very massive metal-free stars evolve into red...
Context. So-called superluminous supernovae have been recently discovered in the local Universe. It ...
The issue of which stars may reach the conditions of electron/positron pair-formation instability is...
In certain mass ranges, massive stars can undergo a violent pulsation triggered by the electron/posi...
We calculate the evolution of massive stars, which undergo pulsational pair-instability (PPI) when t...
Nonrotating, zero metallicity stars with initial masses 140 < M < 260 solar masses are expected to e...
In recent years, the viability of the pair-instability supernova (PISN) scenario for explaining supe...
Theoretical models predict that some of the first stars ended their lives as extremely energetic pai...
Very massive primordial stars (140 M < M < 260 M) are supposed to end their lives as PISN. Such an e...
Context. In recent observations of extremely metal-poor, low-mass, starburst galaxies, almost solar ...
We study the effects of rotation on the dynamics, energetics, and Ni-56 production of pair instabili...
Near-solar metallicity (and low-redshift) pair-instability supernova (PISN) candidates challenge ste...
The recently discovered bright Type II supernova OGLE14-073 evolved very slowly. The light curve ro...
International audienceAccording to theoretical models, massive stars with masses within the 100–250 ...
Aims.Pair creation supernovae (PCSN) are thought to be produced from very massive low metallicity s...
Recent stellar evolution models show consistently that very massive metal-free stars evolve into red...
Context. So-called superluminous supernovae have been recently discovered in the local Universe. It ...