A comprehensive population synthesis study of post-common envelope binaries
arXiv:0903.4152 · doi:10.1111/j.1365-2966.2009.16138.x
Abstract
We apply population synthesis techniques to calculate the present day population of post-common envelope binaries (PCEBs) for a range of theoretical models describing the common envelope (CE) phase. Adopting the canonical energy budget approach we consider models where the ejection efficiency, $α_{\rmn{CE}}$ is either a constant, or a function of the secondary mass. We obtain the envelope binding energy from detailed stellar models of the progenitor primary, with and without the thermal and ionization energy, but we also test a commonly used analytical scaling. We also employ the alternative angular momentum budget approach, known as the -algorithm. We find that a constant, global value of $α_{\rmn{CE}} \ga 0.1$ can adequately account for the observed population of PCEBs with late spectral-type secondaries. However, this prescription fails to reproduce IK Pegasi, which has a secondary with spectral type A8. We can account for IK Pegasi if we include thermal and ionization energy of the giant's envelope, or if we use the -algorithm. However, the -algorithm predicts local space densities that are 1 to 2 orders of magnitude greater than estimates from observations. In contrast, the canonical energy budget prescription with an initial mass ratio distribution that favours unequal initial mass ratios gives a local space density which is in good agreement with observations, and best reproduces the observed distribution of PCEBs. Finally, all models fail to reproduce the sharp decline for orbital periods, $P_{\rmn{orb}} \ga 1$ d in the orbital period distribution of observed PCEBs, even if we take into account selection effects against systems with long orbital periods and early spectral-type secondaries.
Accepted for publication in the Monthly Notices of the Royal Astronomical Society. 18 pages, 10 figures. Work concerning the reconstruction of the common envelope phase presented in the previous version will now be submitted in a separate paper in the near future
References in corpus (11)
- Survival of a brown dwarf after engulfment by a red giant star
- Post Common Envelope Binaries from SDSS. I: 101 white dwarf main sequence binaries with multiple SDSS spectroscopy
- Mass-loss and diffusion in subdwarf B stars and hot white dwarfs: do weak winds exist?
- Population Synthesis Studies of Close Binary Systems Using a Variable Common Envelope Efficiency Parameter: I. Dependence upon Secondary Mass
- How Many CVs are Crossing the Period Gap? A Test for the Disruption of Magnetic Braking
- HS2237+8154: On the onset of mass transfer or entering the period gap?
- The pre-cataclysmic variable, LTT560
- DE CVn: A bright, eclipsing red dwarf - white dwarf binary
- Orbital Parameters and Chemical Composition of Four White Dwarfs in Post-Common Envelope Binaries
- HS1857+5144: A hot and young pre-cataclysmic variable
- An alternative to common envelope evolution
Cited by in corpus (77)
- Mind your Ps and Qs: the Interrelation between Period (P) and Mass-ratio (Q) Distributions of Binary Stars
- Common Envelope Evolution: Where we stand and how we can move forward
- The rotation rates of massive stars: the role of binary interaction through tides, mass transfer and mergers
- Hot subluminous stars
- Post-common-envelope binaries from SDSS. IX: Constraining the common-envelope efficiency
- Binary Neutron Star Mergers
- Post-common-envelope binaries from SDSS. XI: The white dwarf mass distributions of CVs and pre-CVs
- The AstraLux Large M-dwarf Multiplicity Survey
- On the alpha formalism for the common envelope interaction
- On the Binding Energy Parameter of Common Envelope Evolution
- The effect of common-envelope evolution on the visible population of post-common-envelope binaries
- Post common envelope binaries from SDSS. XII: The orbital period distribution
- Origin of apparent period variations in eclipsing post-common-envelope binaries
- Monte Carlo simulations of post-common-envelope white dwarf + main sequence binaries: comparison with the SDSS DR7 observed sample
- PopCORN: Hunting down the differences between binary population synthesis codes
- Lunar Gravitational-Wave Antenna
- KOI-3278: A Self-Lensing Binary Star System
- On the Formation of Double White Dwarfs through Stable Mass Transfer and a Common Envelope
- The SDSS spectroscopic catalogue of white dwarf-main sequence binaries: new identifications from DR9-12
- Evolution of Cataclysmic Variables and Related Binaries Containing a White-Dwarf
- Is the common envelope ejection efficiency a function of the binary parameters?
- Speaking with one voice: simulations and observations discuss the common envelope parameter
- Monte Carlo simulations of post-common-envelope white dwarf + main sequence binaries: The effects of including recombination energy
- White dwarf-main sequence binaries from Gaia EDR3: the unresolved 100pc volume-limited sample
- White dwarf-main sequence binaries from SDSS DR8: unveiling the cool white dwarf population
- Post-common envelope binaries from SDSS - XVI. Long orbital period systems and the energy budget of CE evolution
- A barium central star binary in the Type-I diamond ring planetary nebula Abell 70
- A radial velocity survey for post-common-envelope Wolf-Rayet central stars of planetary nebulae: First results and discovery of the close binary nucleus of NGC 5189
- Three New Eclipsing White-dwarf - M-dwarf Binaries Discovered in a Search for Transiting Planets Around M-dwarfs
- The Role of Convection in Determining the Ejection Efficiency of Common Envelope Interactions
- Planetary nebulae after common-envelope phases initiated by low-mass red giants
- Compact Binary Coalescences: Astrophysical Processes and Lessons Learned
- Post-common-envelope binaries from SDSS. XIII: Mass dependencies of the orbital period distribution
- White dwarf-main sequence binaries from LAMOST: the DR5 catalogue
- The population of white dwarf-main sequence binaries in the SDSS DR 12
- Population synthesis of accreting white dwarfs: II. X-ray and UV emission
- Next generation population synthesis of accreting white dwarfs: I. Hybrid calculations using BSE + MESA
- White dwarf-main sequence binaries from LAMOST: the DR1 catalogue
- SALT HRS discovery of the binary nucleus of the Etched Hourglass Nebula MyCn 18
- The evolution of the self-lensing binary KOI-3278: evidence of extra energy sources during CE evolution
- Wide post-common envelope binaries from Gaia: orbit validation and formation models
- SPOTS: The Search for Planets Orbiting Two Stars. I. Survey description and first observations
- A population synthesis fitting of the resolved white dwarf binary population within 100 pc
- Convection and Spin-Up During Common Envelope Evolution: The Formation of Short-Period Double White Dwarfs
- Common Envelope Evolution on the Asymptotic Giant Branch: Unbinding within a Decade?
- Monte Carlo population synthesis of post-common-envelope white dwarf binaries and type Ia supernova rate
- On the Common Envelope Efficiency
- Modelling nova populations in galaxies
- Convection Reconciles the Difference in Efficiencies Between Low-Mass and High-Mass Common Envelopes
- SALT HRS discovery of a long period double-degenerate binary in the planetary nebula NGC 1360
- The effect of intermediate mass close binaries on the chemical evolution of Globular Clusters
- Influence of a mass transfer stability criterion on double white dwarf populations
- Energy Budget and Core-Envelope Motion in Common Envelope Evolution
- X-ray luminosity function of high-mass X-ray binaries: Studying the signatures of different physical processes using detailed binary evolution calculations
- Core radii and common-envelope evolution
- Observational Constraints on the Common Envelope Phase
- High resolution imaging of NGC 2346 with GSAOI/GeMS: disentangling the planetary nebula molecular structure to understand its origin and evolution
- On the post-common-envelope central star of the planetary nebula NGC 2346
- Oxygen-neon rich merger during common envelope evolution
- Formation of long-period post-common-envelope binaries I. No extra energy is needed to explain oxygen-neon white dwarfs paired with AFGK-type main-sequence stars
- Formation of long-period post-common-envelope binaries II. Explaining the self-lensing binary KOI 3278
- Minimum Orbital Period of Pre-Cataclysmic Variables
- The post-common-envelope binary nucleus of the planetary nebula IC~4776: Neither an anomalously long orbital period nor a Wolf-Rayet binary
- TIC 278956474: Two close binaries in one young quadruple system, identified by \textit{TESS}
- Evidence for bimodal orbital separations of white dwarf-red dwarf binary stars
- An extremely hot white dwarf with a rapidly rotating K-type subgiant companion: UCAC2 46706450
- Photometric variability of candidate white dwarf binary systems from Palomar Transient Factory archival data
- The final orbital separation in common envelope evolution
- Common Envelope Mechanisms: Constraints from the X-ray Luminosity Function of High Mass X-ray Binaries
- Accretion and activity on the post-common-envelope binary RR~Cae
- A magnitude-limited catalogue of unresolved white dwarf-main sequence binaries from Gaia DR3
- Population Study of Astrophysical False Positive Detections in the Southern PLATO field
- Past and future of the central double-degenerate core of Henize 2-428
- The Energy Sharing Timescale in an Analytic Framework for Common Envelope Hydrodynamics
- Two unseen massive white dwarf candidates in close binaries
- Light Curve Models of Convective Common Envelopes
- A TESS View of Post-Eruption Variability in the Novae V1405 Cas,V1716 Sco, and V1674 Her