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Partly burnt runaway stellar remnants from peculiar thermonuclear supernovae
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We report the discovery of three stars that, along with the prototype LP40-365, form a distinct class of chemically peculiar runaway stars that are the survivors of thermonuclear explosions. Spectroscopy of the four confirmed LP 40-365 stars finds ONe-dominated atmospheres enriched with remarkably similar amounts of nuclear ashes of partial O- and Si-burning. Kinematic evidence is consistent with ejection from a binary supernova progenitor; at least two stars have rest-frame velocities indicating they are unbound to the Galaxy. With masses and radii ranging between 0.20-0.28 Msun and 0.16-0.60 Rsun, respectively, we speculate these inflated white dwarfs are the partly burnt remnants of either peculiar Type Iax or electron-capture supernovae. Adopting supernova rates from the literature, we estimate that ~20 LP40-365 stars brighter than 19 mag should be detectable within 2 kpc from the Sun at the end of the Gaia mission. We suggest that as they cool, these stars will evolve in their spectroscopic appearance, and eventually become peculiar O-rich white dwarfs. Finally, we stress that the discovery of new LP40-365 stars will be useful to further constrain their evolution, supplying key boundary conditions to the modelling of explosion mechanisms, supernova rates, and nucleosynthetic yields of peculiar thermonuclear explosions.
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Cited by 3 Pith papers
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A New Model for Electron-Capture Supernovae in Galactic Chemical Evolution
Combining thermonuclear electron-capture supernovae with gravitational-collapse ECSNe and low-mass Fe-core supernovae in a Milky Way model reproduces solar abundances of 48Ca, 50Ti, 54Cr, and several Zn-Zr isotopes.
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A hyper-runaway white dwarf in Gaia DR2 as a Type Iax supernova primary remnant candidate
LP 93-21 is a white dwarf moving at about 605 km/s, fast enough to leave the Milky Way, and it is the best candidate yet for a fully cooled Type Iax supernova primary remnant.
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Observational Properties of Thermonuclear Supernovae
A broad, observationally focused review of type Ia supernovae and related white-dwarf explosions, covering photometric and spectroscopic properties, environmental dependencies, and the diversity of peculiar classes.
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