We derive the criteria for deflagration to detonation transition (DDT) in a Type Ia supernova. The theory is based on the two major assumptions: (i) detonation is triggered via the Zeldovich gradient mechanism inside a region of mixed fuel and products, (ii) the mixed region is produced by a turbulent mixing of fuel and products either inside an active deflagration front or during the global expansion and subsequent contraction of an exploding white dwarf. We determine the critical size of the mixed region required to initiate a detonation in a degenerate carbon-oxygen mixture. This critical length is much larger than the width of the reaction front of a Chapman-Jouguet detonation. However, at densities greater than simeq 5 x 10^6 g cm^-3, ...
We present a detonating failed deflagration model of Type Ia supernovae. In this model, the thermonu...
Type Ia supernovae (SN Ia) are generally believed to be the result of the thermonuclear disruption o...
In the context of explosion models for Type Ia Supernovae, we present one- and two-dimensional simul...
We examine the effects of turbulent intermittency on the deflagration to detonation transition (DDT)...
We examine the effects of turbulent intermittency on the deflagration to detonation transition (DDT)...
Delayed detonations of Chandrasekhar-mass white dwarfs are a promising model for normal Type Ia supe...
The flame born in the deep interior of a white dwarf that becomes a Type Ia supernova is subject to ...
Large-scale three-dimensional numerical simulations of the deflagration stage of a thermonuclear sup...
Aims.Deflagration models poorly explain the observed diversity of SNIa. Current multidimensional si...
We explore the evolution of thermonuclear supernova explosions when the progenitor white dwarf star ...
Turbulent combustion is three-dimensional. Turbulence in a Type Ia supernova is driven on large scal...
Aims.Deflagration models poorly explain the observed diversity of SNIa. Current multidimensional si...
Aims.Deflagration models poorly explain the observed diversity of SNIa. Current multidimensional si...
Aims. We study a new mechanism for deflagration-to-detonation transition in thermonuclear ...
Les supernovæ de type Ia (SNe Ia) sont devenues un outil important pour retracer l'expansion de notr...
We present a detonating failed deflagration model of Type Ia supernovae. In this model, the thermonu...
Type Ia supernovae (SN Ia) are generally believed to be the result of the thermonuclear disruption o...
In the context of explosion models for Type Ia Supernovae, we present one- and two-dimensional simul...
We examine the effects of turbulent intermittency on the deflagration to detonation transition (DDT)...
We examine the effects of turbulent intermittency on the deflagration to detonation transition (DDT)...
Delayed detonations of Chandrasekhar-mass white dwarfs are a promising model for normal Type Ia supe...
The flame born in the deep interior of a white dwarf that becomes a Type Ia supernova is subject to ...
Large-scale three-dimensional numerical simulations of the deflagration stage of a thermonuclear sup...
Aims.Deflagration models poorly explain the observed diversity of SNIa. Current multidimensional si...
We explore the evolution of thermonuclear supernova explosions when the progenitor white dwarf star ...
Turbulent combustion is three-dimensional. Turbulence in a Type Ia supernova is driven on large scal...
Aims.Deflagration models poorly explain the observed diversity of SNIa. Current multidimensional si...
Aims.Deflagration models poorly explain the observed diversity of SNIa. Current multidimensional si...
Aims. We study a new mechanism for deflagration-to-detonation transition in thermonuclear ...
Les supernovæ de type Ia (SNe Ia) sont devenues un outil important pour retracer l'expansion de notr...
We present a detonating failed deflagration model of Type Ia supernovae. In this model, the thermonu...
Type Ia supernovae (SN Ia) are generally believed to be the result of the thermonuclear disruption o...
In the context of explosion models for Type Ia Supernovae, we present one- and two-dimensional simul...