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Beyond the Bubble Catastrophe of Type Ia Supernovae: Pulsating Reverse Detonation Models

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Eduardo Bravo1,2 and Domingo García-Senz1,2

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[1]

High-resolution Simulations of Convection Preceding Ignition in Type Ia Supernovae Using Adaptive Mesh Refinement

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Nuclear astrophysics: the unfinished quest for the origin of the elements

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Incomplete Carbon-Oxygen Detonation in Type Ia Supernovae

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Nucleosynthesis in Two-Dimensional Delayed Detonation Models of Type Ia Supernova Explosions

K. Maeda et al.  The Astrophysical Journal 2010  712 624
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Secondary Parameters of Type Ia Supernova Light Curves

P. Höflich et al.  The Astrophysical Journal 2010  710 444
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Initiation of the Detonation in the Gravitationally Confined Detonation Model of Type Ia Supernovae

Ivo R. Seitenzahl et al.  The Astrophysical Journal 2009  700 642
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The Blast-Wave-Driven Instability as a Vehicle for Understanding Supernova Explosion Structure

Aaron R. Miles  The Astrophysical Journal 2009  696 498
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Pulsating Reverse Detonation Models of Type Ia Supernovae. II. Explosion

Eduardo Bravo et al.  The Astrophysical Journal 2009  695 1257
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Pulsating Reverse Detonation Models of Type Ia Supernovae. I. Detonation Ignition

Eduardo Bravo and Domingo García-Senz  The Astrophysical Journal 2009  695 1244
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[10]

Study of the Detonation Phase in the Gravitationally Confined Detonation Model of Type Ia Supernovae

Casey A. Meakin et al.  The Astrophysical Journal 2009  693 1188
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Three-Dimensional Simulations of the Deflagration Phase of the Gravitationally Confined Detonation Model of Type Ia Supernovae

G. C. Jordan IV et al.  The Astrophysical Journal 2008  681 1448
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The Persistence of Memory, or How the X-Ray Spectrum of SNR 0509–67.5 Reveals the Brightness of Its Parent Type Ia Supernova

Carles Badenes et al.  The Astrophysical Journal 2008  680 1149
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Detailed Spectral Modeling of a Three-dimensional Pulsating Reverse Detonation Model: Too Much Nickel

E. Baron et al.  The Astrophysical Journal 2008  672 1038
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A Three-Dimensional Deflagration Model for Type Ia Supernovae Compared with Observations

F. K. Röpke et al.  The Astrophysical Journal 2007  668 1132
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Off-Center Ignition in Type Ia Supernovae. I. Initial Evolution and Implications for Delayed Detonation

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Constraints on the Physics of Type Ia Supernovae from the X-Ray Spectrum of the Tycho Supernova Remnant

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crossref member

  1. Beyond the Bubble Catastrophe of Type Ia Supernovae: Pulsating Reverse Detonation Models

    Eduardo Bravo and Domingo García-Senz 2006 ApJ 642 L157

  2. Parity nonconservation in the radiative recombination of electrons with heavy hydrogen-like ions

    A V Maiorova et al 2009 J. Phys. B: At. Mol. Opt. Phys. 42 205002

  3. Ultra-High-Energy Neutrino Scattering onto Relic Light Neutrinos in the Galactic Halo as a Possible Source of the Highest Energy Extragalactic Cosmic Rays

    D. Fargion et al. 1999 ApJ 517 725

  4. Eight-logic memory cell based on multiferroic junctions

    Feng Yang et al 2009 J. Phys. D: Appl. Phys. 42 072004

  5. The Reddening-Free Decline Rate Versus Luminosity Relationship for Type Ia Supernovae

    M. M. Phillips et al. 1999 The Astronomical Journal 118 1766

  6. Exchange interaction effects in NO core-level photoionization cross-sections

    A Rüdel et al 2005 New J. Phys. 7 189

  7. Understanding and modelling plasma–electrode interaction in high-pressure arc discharges: a review

    M S Benilov 2008 J. Phys. D: Appl. Phys. 41 144001

  8. Viscous Dissipation in the Galactic Center Region

    Renaud Belmont and Michel Tagger 2006 J. Phys.: Conf. Ser. 54 147

  9. Molecular high-order harmonic generation: analysis of a destructive interference condition

    S Odžak and D B Milošević 2009 J. Phys. B: At. Mol. Opt. Phys. 42 071001

  10. EDITORIAL

    P W Martin 2002 Metrologia 39 517

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