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Type Ia supernovae are associated with thermonuclear explosions of white dwarf stars.
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Röpke, F. K. 2003. On the stability of thermonuclear flames in type Ia supernova explosions. PhD diss, Technical University of Munich
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Röpke, F. K., and W. Hillebrandt. 2004. The case against the progenitor’s carbon-to-oxygen ratio as a source of peak luminosity variations in type Ia supernovae. A&A
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Fink, M., F. K. Röpke, W. Hillebrandt, I. R. Seitenzahl, S. A. Sim, and M. Kromer. 2010. Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core? A&A
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Jackson, A. P., A. C. Calder, D. M. Townsley, D. A. Chamulak, E. F. Brown, and F. X. Timmes. 2010. Evaluating systematic dependencies of type Ia supernovae: The influence of deflagration to detonation density. ApJ
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Pakmor, R., M. Kromer, F. K. Röpke, S. A. Sim, A. J. Ruiter, and W. Hillebrandt. 2010. Sub-luminous type ia supernovae from the mergers of equal-mass white dwarfs with mass ∼ \sim 0.9m ⊙
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Sim, S. A., F. K. Röpke, W. Hillebrandt, M. Kromer, R. Pakmor, M. Fink, A. J. Ruiter, and I. R. Seitenzahl. 2010. Detonations in sub-Chandrasekhar-mass C+O white dwarfs. ApJ Lett
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Pakmor, R., M. Kromer, S. Taubenberger, S. A. Sim, F. K. Röpke, and W. Hillebrandt. 2012. Normal Type Ia supernovae from violent mergers of white dwarf binaries. ApJ Lett
2012
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Ciaraldi-Schoolmann, F., I. R. Seitenzahl, and F. K. Röpke. 2013. A subgrid-scale model for deflagration-to-detonation transitions in Type Ia supernova explosion simulations. Numerical implementation. A&A
2013
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Kromer, M., M. Fink, V. Stanishev, S. Taubenberger, F. Ciaraldi-Schoolman, R. Pakmor, F. K. Röpke, A. J. Ruiter, I. R. Seitenzahl, S. A. Sim, G. Blanc, N. Elias-Rosa, and W. Hillebrandt. 2013. 3D deflagration simulations leaving bound remnants: a model for 2002cx-like Type Ia supernovae. Mon. Not. R. Astron. Soc
2013
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Moll, R., and S. E. Woosley. 2013. Multi-dimensional Models for Double Detonation in Sub-Chandrasekhar Mass White Dwarfs. ApJ
2013
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Pakmor, R., M. Kromer, S. Taubenberger, and V. Springel. 2013. Helium-ignited violent mergers as a unified model for normal and rapidly declining type Ia supernovae. ApJ Lett
2013
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Seitenzahl, I. R., F. Ciaraldi-Schoolmann, F. K. Röpke, M. Fink, W. Hillebrandt, M. Kromer, R. Pakmor, A. J. Ruiter, S. A. Sim, and S. Taubenberger. 2013. Three-dimensional delayed-detonation models with nucleosynthesis for Type Ia supernovae. Mon. Not. R. Astron. Soc
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Fink, M., M. Kromer, I. R. Seitenzahl, F. Ciaraldi-Schoolmann, F. K. Röpke, S. A. Sim, R. Pakmor, A. J. Ruiter, and W. Hillebrandt. 2014. Three-dimensional pure deflagration models with nucleosynthesis and synthetic observables for Type Ia supernovae. Mon. Not. R. Astron. Soc
2014
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Jackson, A. P., D. M. Townsley, and A. C. Calder. 2014. Power-law wrinkling turbulence-flame interaction model for astrophysical flames. ApJ
2014
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Ohlmann, S. T., M. Kromer, M. Fink, R. Pakmor, I. R. Seitenzahl, S. A. Sim, and F. K. Röpke. 2014. The white dwarf’s carbon fraction as a secondary parameter of Type Ia supernovae. A&A
2014
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Hicks, E. P. 2015. Rayleigh-Taylor unstable flames – Fast or faster? ApJ
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Marquardt, K. S., S. A. Sim, A. J. Ruiter, I. R. Seitenzahl, S. T. Ohlmann, M. Kromer, R. Pakmor, and F. K. Röpke. 2015. Type Ia supernovae from exploding oxygen-neon white dwarfs. A&A
2015
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Seitenzahl, I. R., M. Kromer, S. T. Ohlmann, F. Ciaraldi-Schoolmann, K. Marquardt, M. Fink, W. Hillebrandt, R. Pakmor, F. K. Röpke, A. J. Ruiter, S. A. Sim, and S. Taubenberger. 2016. Three-dimensional simulations of gravitationally confined detonations compared to observations of SN 1991T. A&A
2016
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