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Simulation studies indicate that weak interaction rates on nickel isotopes play a crucial role in determining the electron-to-baryon ratio within the stellar interior during the late stages of core evolution. (Anti)neutrinos produced…

Nuclear Theory · Physics 2025-04-22 Jameel-Un Nabi , Ramoona Shehzadi , Muhammad Majid

The isotopes of manganese in the mass range A equal to 53 to 63 are abundant in the core material of high mass stars and are believed to be of prime importance in the progression of the pre collapse phases. During these late evolutionary…

Nuclear Theory · Physics 2025-02-28 R. Shehzadi , J. -U. Nabi , F. Farooq

Much excitement surrounds the intense mass loss that seems to take place in some massive stars immediately before core collapse. However, occurring too late, it has a negligible impact on the star's evolution or the final yields, which are…

Solar and Stellar Astrophysics · Physics 2023-07-05 Luc Dessart , Claudia P. Gutierrez , Hanindyo Kuncarayakti , Ori D. Fox , Alexei V. Filippenko

A detailed model for the calculation of beta decay rates of the $fp$ shell nuclei for situations prevailing in pre-supernova and collapse phases of evolution of the core of massive stars leading to supernova explosion has been extended for…

Nuclear Theory · Physics 2008-11-26 K. Kar , S. Chakravarti , A. Ray , S. Sarkar

Measurements of explosive nucleosynthesis yields in core-collapse supernovae provide tests for explosion models. We investigate constraints on explosive conditions derivable from measured amounts of nickel and iron after radioactive decays…

Solar and Stellar Astrophysics · Physics 2015-07-15 A. Jerkstrand , F. X. Timmes , G. Magkotsios , S. A. Sim , C. Fransson , J. Spyromilio , A. Heger , B. Müller , J. Sollerman , S. J. Smartt

New two-dimensional, high-resolution calculations of a core collapse supernova in a 15 Msol blue supergiant are presented, which cover the entire evolution from shock revival until the first few hours of the explosion. Explosive…

Astrophysics · Physics 2007-05-23 K. Kifonidis , T. Plewa , H. -Th. Janka , E. Mueller

When a core-collapse supernova explodes in a binary star system, the ejecta might encounter an overdense shell, where the stellar winds of the two stars previously collided. In this work, we investigate effects of such interactions on…

High Energy Astrophysical Phenomena · Physics 2022-01-19 Ondřej Pejcha , Diego Calderón , Petr Kurfürst

$\beta$-decay and positron decay are believed to play a consequential role during the late phases of stellar evolution of a massive star culminating in a supernova explosion. Recently the microscopic calculation of weak-interaction mediated…

Nuclear Theory · Physics 2015-06-22 Jameel-Un Nabi

We present the basic properties of the yields of our latest set of presupernova evolution and explosive nucleosynthesis of massive stars in the range between 11 and 120 Msun having solar and zero metallicity.

Astrophysics · Physics 2009-11-11 M. Limongi , A. Chieffi

Amongst iron regime nuclei, $\beta$-decay rates on titanium isotopes are considered to be important during the late phases of evolution of massive stars. The key $\beta$-decay isotopes during presupernova evolution were searched from…

Nuclear Theory · Physics 2011-08-05 Jameel-Un Nabi , Irgaziev Bakhadir

We review the main properties of solar metallicity massive stars in the range 11-120 Msun. The influence of the mass loss on the hydrostatic burning stages as well as the final explosion is discussed in some detail. We find that the minimum…

Astrophysics · Physics 2008-11-26 Marco Limongi , Alessandro Chieffi

We estimate lepton capture and emission rates, as well as neutrino energy loss rates, for nuclei in the mass range A=65-80. These rates are calculated on a temperature/density grid appropriate for a wide range of astrophysical applications…

Astrophysics · Physics 2009-11-07 Jason Pruet , George M. Fuller

Electron captures on nuclei play an important role in the dynamics of the collapsing core of a massive star that leads to a supernova explosion. Recent calculations of these capture rates were based on microscopic models which account for…

Nuclear Theory · Physics 2010-11-23 A. Juodagalvis , K. Langanke , W. R. Hix , G. Martínez-Pinedo , J. M. Sampaio

The acquisition of precise and reliable nuclear data is a prerequisite to success for stellar evolution and nucleosynthesis studies. Core-collapse simulators find it challenging to generate an explosion from the collapse of the core of…

Nuclear Theory · Physics 2015-05-30 Jameel-Un Nabi , Abdel Nasser Tawfik

Weak interaction rates and the associated energy losses for massive nuclei in the fp-shell are calculated in stellar matter using a modified form of proton-neutron quasiparticle RPA model with separable Gamow-Teller forces. A total of 209…

Nuclear Theory · Physics 2007-05-23 J. -U. Nabi , H. V. Klapdor-Kleingrothaus

Accurate estimate of neutrino energy loss rates are needed for the study of the late stages of the stellar evolution, in particular for cooling of neutron stars and white dwarfs. Proton-neutron quasi-particle random phase approximation…

Nuclear Theory · Physics 2012-03-21 Jameel-Un Nabi

Supernovae characterized by enduring narrow optical hydrogen emission lines (SNe IIn) are believed to result primarily from the core-collapse of massive stars undergoing sustained interaction with a dense circumstellar medium (CSM). While…

Nuclear structure properties and weak interaction rates of neutron rich even even iron (Fe) isotopes (A = 50 70) are investigated using the Interacting Boson Model1 (IBM1) and the proton neutron Quasiparticle Random Phase Approximation…

Nuclear Theory · Physics 2024-10-28 Jameel-Un Nabi , Mahmut Boyukata , Asim Ullah , Muhammad Riaz

We explore properties of core-collapse supernova progenitors with respect to the composite uncertainties in the thermonuclear reaction rates by coupling the reaction rate probability density functions provided by the STARLIB reaction rate…

Solar and Stellar Astrophysics · Physics 2018-02-07 C. E. Fields , F. X. Timmes , R. Farmer , I. Petermann , William M. Wolf , S. M. Couch

A significant fraction of stars between 7-11 solar masses are thought to become supernovae, but the explosion mechanism is unclear. The answer depends critically on the rate of electron capture on $^{20}$Ne in the degenerate oxygen-neon…