Binary Interaction Dominates Mass Ejection in Classical Novae
arXiv:2205.06283 · doi:10.3847/1538-4357/ac9136
Abstract
Recent observations suggest our understanding of mass loss in classical novae is incomplete, motivating a new theoretical examination of the physical processes responsible for nova mass ejection. In this paper, we perform hydrodynamical simulations of classical nova outflows using the stellar evolution code MESA. We find that, when the binary companion is neglected, white dwarfs with masses >= 0.8 Msol successfully launch radiation-pressure-driven optically thick winds that carry away most of the envelope. However, for most of the mass loss phase, these winds are accelerated at radii beyond the white dwarf's Roche radius assuming a typical cataclysmic variable donor. This means that, before a standard optically thick wind can be formed, mass loss will instead be initiated and shaped by the binary interaction. An isotropic optically thick wind is only successfully launched when the acceleration region recedes within the white dwarf's Roche radius, which occurs after most of the envelope has already been ejected. The interaction between these two modes of outflow -- a first phase of slow, binary-driven, equatorially focused mass loss encompassing most of the mass ejection and a second phase consisting of a fast, isotropic, optically thick wind -- is consistent with observations of aspherical ejecta and signatures of multiple outflow components. We also find that isolated lower-mass white dwarfs <= 0.8 Msol do not develop unbound optically thick winds at any stage, making it even more crucial to consider the effects of the binary companion on the resulting outburst.
Accepted for publication in ApJ. Minor changes to previous version for clarity
References in corpus (23)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Fermi Establishes Classical Novae as a Distinct Class of Gamma-Ray Sources
- New Insights into Classical Novae
- First measurement of the 14N(p,gamma)15O cross section down to 70 keV
- Constraining the Evolution of Cataclysmic Variables via the Masses and Accretion Rates of their Underlying White Dwarfs
- Every interacting double white dwarf binary may merge
- Early spectral evolution of classical novae: consistent evidence for multiple distinct outflows
- Wait for it: Post-supernova winds driven by delayed radioactive decays
- Slowly, slowly in the wind: 3D hydrodynamical simulations of wind mass transfer and angular-momentum loss in AGB binary systems
- Three-dimensional hydrodynamical simulations of mass transfer in binary systems by a free wind
- A Thousand and One Nova Outbursts
- X-ray detection of a nova in the fireball phase
- On mixing at the core-envelope interface during classical nova outbursts
- NuSTAR Detection of X-rays Concurrent with Gamma Rays in the Nova V5855 Sgr
- Multiplicity of Nova Envelope Solutions and Occurrence of Optically Thick Winds
- X-ray Spectroscopy of the gamma-ray Brightest Nova V906 Car (ASASSN-18fv)
- Novae heat their food: mass transfer by irradiation
- Multiwavelength observations of nova SMCN 2016-10a --- one of the brightest novae ever observed
- Transients from the Cataclysmic Deaths of Cataclysmic Variables
- The impact of metallicity on nova populations
- The Effect of Enriched Accreted Matter on the Development of Novae
- Mixing fraction in classical novae
- Gamma-Ray Light Curves and Spectra of Classical Novae
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