An analytic model for mass transfer in binaries with arbitrary eccentricity, with applications to triple-star systems
arXiv:1812.05624 · doi:10.3847/1538-4357/ab001d
Abstract
Most studies of mass transfer in binary systems assume circular orbits at the onset of Roche lobe overflow. However, there are theoretical and observational indications that mass transfer could occur in eccentric orbits. In particular, eccentricity could be produced via sudden mass loss and velocity kicks during supernova explosions, or Lidov-Kozai (LK) oscillations in hierarchical triple systems, or, more generally, secular evolution in multiple-star systems. However, current analytic models of eccentric mass transfer are faced with the problem that they are only well defined in the limit of very high eccentricities, and break down for less eccentric and circular orbits. This provides a major obstacle to implementing such models in binary and higher-order population synthesis codes, which are useful tools for studying the long-term evolution of a large number of systems. Here, we present a new analytic model to describe the secular orbital evolution of binaries undergoing conservative mass transfer. The main improvement of our model is that the mass transfer rate is a smoothly varying function of orbital phase, rather than a delta function centered at periapsis. Consequently, our model is in principle valid for any eccentricity, thereby overcoming the main limitation of previous works. We implement our model in an easy-to-use and publicly available code that can be used as a basis for implementations of our model into population synthesis codes. We investigate the implications of our model in a number of applications with circular and eccentric binaries, and triples undergoing LK oscillations.
Minor changes to match ApJ publication. 16 pages, 10 figures. Code can be found at https://github.com/hamers/emt
References in corpus (12)
- X-ray Properties of Black-Hole Binaries
- Steady-state planet migration by the Kozai-Lidov mechanism in stellar binaries
- Interacting Binaries with Eccentric Orbits. Secular Orbital Evolution Due To Conservative Mass Transfer
- Mass transfer in white dwarf-neutron star binaries
- Orbital eccentricities of binary systems with a former AGB star
- Interacting Binaries with Eccentric Orbits II. Secular Orbital Evolution Due To Non-Conservative Mass Transfer
- Secular chaotic dynamics in hierarchical quadruple systems, with applications to hot Jupiters in stellar binaries and triples
- On the formation of eccentric millisecond pulsars with helium white-dwarf companions
- Chaotic quadruple secular evolution and the production of misaligned exomoons and Warm Jupiters in stellar multiples
- Mass transfer in eccentric binaries: the new Oil-on-Water SPH technique
- Roche-lobe overflow in eccentric planet-star systems
- Binary evolution using the theory of osculating orbits: conservative Algol evolution
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