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Related papers: Supernova Ia: a Converging Delayed Detonation Wave

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We investigate a sub-Chandrasekhar mass double detonation pathway for Type Ia supernovae arising from single degenerate helium accreting carbon-oxygen white dwarfs. Building on our previous one dimensional study of recurrent helium novae…

High Energy Astrophysical Phenomena · Physics 2026-03-25 Amir Michaelis , Yael Hillman , Hagai B. Perets

The evolutionary path of rotating CO WDs directly accreting CO-rich matter is followed up to few seconds before the explosive breakout in the framework of the Double Degenerate rotationally-driven accretion scenario. We find that the…

Astrophysics of Galaxies · Physics 2013-04-30 A. Tornambé , L. Piersanti

The physical structure of a nuclear flame is a basic ingredient of the theory of Type Ia supernovae (SNIa). Assuming an exponential density reduction with several characteristic times we have followed the evolution of a planar nuclear flame…

Astrophysics · Physics 2011-02-11 D. Garcia-Senz , E. Bravo , R. M. Cabezon , S. E. Woosley

While O is often seen in spectra of Type Ia supernovae (SNe Ia) as both unburned fuel and a product of C burning, C is only occasionally seen at the earliest times, and it represents the most direct way of investigating primordial white…

Cosmology and Nongalactic Astrophysics · Physics 2016-03-02 Jeffrey M. Silverman , Alexei V. Filippenko

It is thought that type Ia supernovae (SNe Ia) are explosions of carbon-oxygen white dwarfs (CO WDs). Two main evolutionary channels are proposed for the WD to reach the critical density required for a thermonuclear explosion: the single…

Solar and Stellar Astrophysics · Physics 2015-06-18 J. S. W. Claeys , O. R. Pols , R. G. Izzard , J. Vink , F. W. M. Verbunt

Evolution of a supernova type Ia progenitor requires formation of a CO white dwarf, which implies a dependence on the C burning rate (CBR). It can also be affected by the recently identified possibility of C flame quenching by convective…

Solar and Stellar Astrophysics · Physics 2014-01-16 Michael C. Chen , Falk Herwig , Pavel A. Denissenkov , Bill Paxton

For carbon-oxygen white dwarfs accreting hydrogen or helium at rates in the range ~1-10 x 10^(-8) Msun/y, a variety of explosive outcomes is possible well before the star reaches the Chandrasekhar mass. These outcomes are surveyed for a…

High Energy Astrophysical Phenomena · Physics 2015-05-20 S. E. Woosley , Daniel Kasen

Over the past decades, many explosion scenarios for Type Ia supernovae have been proposed and investigated including various combinations of deflagrations and detonations in white dwarfs of different masses up to the Chandrasekhar mass. One…

Solar and Stellar Astrophysics · Physics 2022-03-22 F. Lach , F. P. Callan , S. A. Sim , F. K. Roepke

The recent prediction and discovery of hypervelocity supernova survivors has provided strong evidence that the "dynamically driven double-degenerate double-detonation" (D6) Type Ia supernova scenario occurs in Nature. In this model, the…

Solar and Stellar Astrophysics · Physics 2025-02-10 Ken J. Shen

Binary systems of two carbon-oxygen white dwarfs are one of the most promising candidates for the progenitor systems of Type Ia supernovae. Violent mergers, where the primary white dwarf ignites when the secondary white dwarf smashes onto…

Recent studies on direct imaging of Type II core-collapse supernova progenitors indicate a possible threshold around $M_{\rm ZAMS}\sim 16-20$ M$_\odot$, where red supergiants with larger birth masses do not appear to result in supernova…

High Energy Astrophysical Phenomena · Physics 2020-01-22 Tuguldur Sukhbold , Scott Adams

He accretion onto carbon-oxygen white dwarfs (CO WDs) plays a fundamental role when studying the formation of type Ia supernovae (SNe Ia). Employing the MESA stellar evolution code, we calculated the long-term evolution of He-accreting CO…

Solar and Stellar Astrophysics · Physics 2017-09-15 Bo Wang , Philipp Podsiadlowski , Zhanwen Han

Type-Ia supernovae result from binary systems that include a carbon-oxygen white dwarf, and these thermonuclear explosions typically produce 0.5 M_solar of radioactive 56Ni. The 56Ni is commonly believed to be buried deeply in the expanding…

A type Ia supernova is thought to be a thermonuclear explosion of either a single carbon-oxygen white dwarf or of a pair of merging white dwarfs. The explosion fuses a large amount of radioactive 56Ni. After the explosion, the decay chain…

High Energy Astrophysical Phenomena · Physics 2017-06-14 E. Churazov , R. Sunyaev , J. Isern , J. Knödlseder , P. Jean , F. Lebrun , N. Chugai , S. Grebenev , E. Bravo , S. Sazonov , M. Renaud

Type Ia supernovae are generally agreed to arise from thermonuclear explosions of carbon-oxygen white dwarfs. The actual path to explosion, however, remains elusive, with numerous plausible parent systems and explosion mechanisms suggested.…

High Energy Astrophysical Phenomena · Physics 2023-03-29 E. Heringer , M. H. van Kerkwijk , S. A. Sim , W. E. Kerzendorf

Type-Ia supernovae (SN Ia) are powerful stellar explosions that provide important distance indicators in cosmology. Recently, we proposed a new SN Ia mechanism that involves a nuclear fission chain reaction in an isolated white dwarf (WD)…

Solar and Stellar Astrophysics · Physics 2022-08-11 C. J. Horowitz

Normal type Ia supernovae (SNe) are thought to arise from the thermonuclear explosion of massive ($>0.8$ M$_\odot$) carbon-oxygen white dwarfs (WDs), although the exact mechanism is debated. In some models helium accretion onto a…

Solar and Stellar Astrophysics · Physics 2021-03-17 Ruediger Pakmor , Yossef Zenati , Hagai B. Perets , Silvia Toonen

We study the occurrence of delayed SNe~Ia in the single degenerate (SD) scenario. We assume that a massive carbon-oxygen (CO) white dwarf (WD) accretes matter coming from a companion star, making it to spin at the critical rate. We assume…

High Energy Astrophysical Phenomena · Physics 2015-08-19 Omar G. Benvenuto , Jorge A. Panei , Ken'ichi Nomoto , Hikaru Kitamura , Izumi Hachisu

Condensed Abstract: We present an extensive study of the inception of supernova explosions by following the evolution of the cores of two massive stars (15 Msun and 25 Msun) in two dimensions. Our calculations begin at the onset of core…

Astrophysics · Physics 2009-10-22 Marc Herant , Willy Benz , W. Raphael Hix , Chris F. Fryer , Stirling Colgate

We explore the variation in single star 15-30 $\rm{M}_{\odot}$, non-rotating, solar metallicity, pre-supernova MESA models due to changes in the number of isotopes in a fully-coupled nuclear reaction network and adjustments in the mass…

Solar and Stellar Astrophysics · Physics 2016-12-14 R. Farmer , C. E. Fields , I. Petermann , Luc Dessart , M. Cantiello , B. Paxton , F. X. Timmes