Mass Transfer in Binary Stars using SPH. II. Eccentric Binaries
arXiv:1011.2204 · doi:10.1088/0004-637X/726/2/67
Abstract
Despite numerous efforts to better understand binary star evolution, some aspects of it remain poorly constrained. In particular, the evolution of eccentric binaries has remained elusive mainly because the Roche lobe formalism derived for circular binaries does not apply. Here, we report the results of our Smoothed Particle Hydrodynamics simulations of mass transfer in eccentric binaries using an alternate method in which we model only the outermost layers of the stars with appropriate boundary conditions. Using this technique, along with properly relaxed model stars, we characterize the mass transfer episodes of binaries with various orbital parameters. In particular, we show that these episodes can be described by Gaussians with a FWMH of ~0.12 P_orb and that the peak rates occur after periastron, at an orbital phase of ~0.58, independently of the eccentricity and mass of the stars. The accreted material is observed to form a rather sparse envelope around either or both stars. Although the fate of this envelope is not modeled in our simulations, we show that a constant fraction (~5%) of the material transferred is ejected from the systems. We discuss this result in terms of the non-conservative mass transfer scenario. We suggest our results could be incorporated in analytical and binary population synthesis studies to help better understand the evolution of eccentric binaries and the formation of exotic stellar populations.
14 pages, 16 figures, 2 tables. Accepted for publication in The Astrophysical Journal
References in corpus (6)
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- Interacting Binaries with Eccentric Orbits. Secular Orbital Evolution Due To Conservative Mass Transfer
- Interacting Binaries with Eccentric Orbits II. Secular Orbital Evolution Due To Non-Conservative Mass Transfer
- Evolution of Close White Dwarf Binaries
- Mass transfer in eccentric binaries: the new Oil-on-Water SPH technique
- Mass Transfer in Binary Stars using SPH. I. Numerical Method
Cited by in corpus (34)
- The impact of companions on stellar evolution
- The evolution of stellar triples: The most common evolutionary pathways
- Mass transfer in white dwarf-neutron star binaries
- Orbital evolution of mass-transferring eccentric binary systems. II. Secular Evolution
- Spoon-Feeding Giant Stars to Supermassive Black Holes: Episodic Mass Transfer from Evolving Stars and Their Contribution to the Quiescent Activity of Galactic Nuclei
- The origin of variability of the intermediate-mass black-hole ULX system HLX-1 in ESO 243-49
- Hydrodynamic Simulations of the Interaction between an AGB Star and a Main Sequence Companion in Eccentric Orbits
- Orbital evolution of mass-transferring eccentric binary systems. I. Phase-dependent evolution
- The formation of the eccentric-orbit millisecond pulsar J1903+0327 and the origin of single millisecond pulsars
- The Great Escape II: Exoplanet Ejection from Dying Multiple Star Systems
- Common-Envelope Episodes that lead to Double Neutron Star formation
- Multiple Stellar Evolution: a population synthesis algorithm to model the stellar, binary, and dynamical evolution of multiple-star systems
- An analytic model for mass transfer in binaries with arbitrary eccentricity, with applications to triple-star systems
- The evolution of triples with a Roche-lobe filling outer star
- Variable Accretion Rates and Fluffy First Stars
- Mass transfer in eccentric binary systems using the binary evolution code BINSTAR
- The eccentric behaviour of windy binary stars
- Formation, disruption and energy output of Population III X-ray binaries
- The Blue Stragglers of the Old Open Cluster NGC 188
- Tidal Dissipation Impact on the Eccentric Onset of Common Envelope Phases in Massive Binary Star Systems
- Simulations of the tidal interaction and mass transfer of a star in an eccentric orbit around an intermediate-mass black hole: the case of HLX-1
- Mass Transfer in Binary Stars using SPH. I. Numerical Method
- A Triple Star Origin For T Pyx and Other Short-Period Recurrent Novae
- A complete X-ray spectral coverage of the 2010 May-June outbursts of Circinus X-1
- Light curve solutions of 12 eccentric Kepler binaries and analysis of their out-of-eclipse variability
- The galactic rate of second and third generation disc and planet formation
- Rapid binary mass transfer: Circumbinary outflows and angular momentum losses
- Period switching in the symbiotic star BX Mon
- Light Curve Solutions of Ten Eccentric Kepler Binaries, Three of them with Tidally Induced Humps
- The peculiar light curve of the Symbiotic Star AX Per of the last 125 years
- Rethinking mass transfer: a unified semi-analytical framework for circular and eccentric binaries. I. Orbital evolution due to conservative mass transfer
- GG Carinae: orbital parameters and accretion indicators from phase-resolved spectroscopy and photometry
- Rethinking mass transfer: a unified semianalytical framework for circular and eccentric binaries. II. Orbital evolution due to nonconservative mass transfer
- Evolving Low- and Intermediate-Mass Binaries: Departures from Classical Theory