Recombination energy in double white dwarf formation
Jose L. A. Nandez, Natalia Ivanova, James C. Lombardi
Abstract
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Jose L. A. Nandez, Natalia Ivanova, James C. Lombardi
Abstract
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Abstract In this Letter, we investigate the role of recombination energy during a common envelope event. We confirm that taking this energy into account helps to avoid the formation of the circumbinary envelope commonly found in previous studies. For the first time, we can model a complete common envelope event, with a clean compact double white dwarf binary system formed at the end. The resulting binary orbit is almost perfectly circular. In addition to considering recombination energy, we also show that between 1/4 and 1/2 of the released orbital energy is taken away by the ejected material. We apply this new method to the case of the double white dwarf system WD 1101+364, and we find that the progenitor system at the start of the common envelope event consisted of an ∼1.5 M⊙ red giant star in an ∼30 d orbit with a white dwarf companion.
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Abstract In this Letter, we investigate the role of recombination energy during a common envelope event. We confirm that taking this energy into account helps to avoid the formation of the circumbinary envelope commonly found in previous studies. For the first time, we can model a complete common envelope event, with a clean compact double white dwarf binary system formed at the end. The resulting binary orbit is almost perfectly circular. In addition to considering recombination energy, we also show that between 1/4 and 1/2 of the released orbital energy is taken away by the ejected material. We apply this new method to the case of the double white dwarf system WD 1101+364, and we find that the progenitor system at the start of the common envelope event consisted of an ∼1.5 M⊙ red giant star in an ∼30 d orbit with a white dwarf companion.
Key concepts: Common envelope, White dwarf, Circumbinary planet, Physics, Envelope (radar), Event (particle physics), Astrophysics, Binary number