Runaway Coalescence at the Onset of Common Envelope Episodes
arXiv:1803.03261 · doi:10.3847/1538-4357/aacf08
Abstract
Luminous red nova transients, presumably from stellar coalescence, exhibit long-term precursor emission over hundreds of binary orbits, leading to impulsive outbursts with durations similar to a single orbital period. In an effort to understand these signatures, we present and analyze a hydrodynamic model of unstable mass transfer from a giant-star donor onto a more compact accretor in a binary system. Our simulation begins with mass transfer at the Roche limit separation and traces a phase of runaway decay leading up to the plunge of the accretor within the envelope of the donor. We characterize the fluxes of mass and angular momentum through the system and show that the orbital evolution can be reconstructed from measurements of these quantities. The morphology of outflow from the binary changes significantly as the binary orbit tightens. At wide separations, a thin stream of relatively high-entropy gas trails from the outer Lagrange points. As the orbit tightens, the orbital motion desynchronizes from the donor's rotation, and low-entropy ejecta trace a broad fan of largely ballistic trajectories. An order-of-magnitude increase in mass ejection rate accompanies the plunge of the accretor with the envelope of the donor. We argue that this transition marks the precursor-to-outburst transition observed in stellar coalescence transients.
Revised following peer-review. ApJ accepted. Animated version of Figure 5 will be available via the Journal's online publication
References in corpus (24)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- GW170608: Observation of a 19-solar-mass Binary Black Hole Coalescence
- Athena: A New Code for Astrophysical MHD
- Formation of Double Neutron Star Systems
- The Evolution of Compact Binary Star Systems
- Formation of Double Compact Objects
- The impact of companions on stellar evolution
- The Interaction of Stellar Objects within a Common Envelope
- Asymmetric Accretion Flows within a Common Envelope
- Accretion in common envelope evolution
- Shock-powered light curves of luminous red novae as signatures of pre-dynamical mass loss in stellar mergers
- Recombination energy in double white dwarf formation
- Pre-explosion spiral mass loss of a binary star merger
- On the Accretion-Fed Growth of Neutron Stars During Common Envelope
- Magnetic Field Amplification During the Common Envelope Phase
- The Stability of Double White Dwarf Binaries Undergoing Direct Impact Accretion
- Constructing stable 3D hydrodynamical models of giant stars
- A Luminous Red Nova in M31 and its Progenitor System
- Accretion Disk Assembly During Common Envelope Evolution: Implications for Feedback and LIGO Binary Black Hole Formation
- Evolution of the stellar-merger red nova V1309 Scorpii: SED analysis
- Simulating the Onset of Grazing Envelope Evolution of Binary Stars
- The January 2015 outburst of a red nova in M31
- iPTF Survey for Cool Transients
- Wolf-Rayet stars, black holes and the first detected gravitational wave source
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- Energy Budget and Core-Envelope Motion in Common Envelope Evolution
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- The Carnegie Supernova Project II. Observations of the luminous red nova AT 2014ej
- Post-dynamical inspiral phase of common envelope evolution: Binary orbit evolution and angular momentum transport
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- Tidal Dissipation Impact on the Eccentric Onset of Common Envelope Phases in Massive Binary Star Systems
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- The formation of `columns crowns' by jets interacting with a circumstellar dense shell
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- Luminous Fast Blue Optical Transients as "Failed" Gravitational-wave Sources: Helium CoreBlack Hole Mergers Following Delayed Dynamical Instability
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