Binary Black Hole Formation with Detailed Modeling: Stable Mass Transfer Leads to Lower Merger Rates
arXiv:2107.05702 · doi:10.3847/1538-4357/ac2610
Abstract
Rapid binary population synthesis codes are often used to investigate the evolution of compact-object binaries. They typically rely on analytical fits of single-star evolutionary tracks and parameterized models for interactive phases of evolution (e.g., mass-transfer on thermal timescale, determination of dynamical instability, and common envelope) that are crucial to predict the fate of binaries. These processes can be more carefully implemented in stellar structure and evolution codes such as MESA. To assess the impact of such improvements, we compare binary black hole mergers as predicted in models with the rapid binary population synthesis code COSMIC to models ran with MESA simulations through mass transfer and common-envelope treatment. We find that results significantly differ in terms of formation paths, the orbital periods and mass ratios of merging binary black holes, and consequently merger rates. While common-envelope evolution is the dominant formation channel in COSMIC, stable mass transfer dominates in our MESA models. Depending upon the black hole donor mass, and mass-transfer and common-envelope physics, at sub-solar metallicity COSMIC overproduces the number of binary black hole mergers by factors of 2--35 with a significant fraction of them having merger times orders of magnitude shorter than the binary black holes formed when using detailed MESA models. Therefore we find that some binary black hole merger rate predictions from rapid population syntheses of isolated binaries may be overestimated by factors of ~5--500. We conclude that the interpretation of gravitational-wave observations requires the use of detailed treatment of these interactive binary phases.
17 pages (13 main text), 5 figures, ApJ, in press
References in corpus (52)
- The NumPy array: a structure for efficient numerical computation
- Modules for Experiments in Stellar Astrophysics (MESA)
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- Observation of gravitational waves from two neutron star-black hole coalescences
- Mass loss from hot massive stars
- The Evolution of Compact Binary Star Systems
- Thermohaline mixing: A physical mechanism governing the photospheric composition of low-mass giants
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- Merging black holes in young star clusters
- 4-OGC: Catalog of gravitational waves from compact-binary mergers
- The evolution of runaway stellar collision products
- A Highly Spinning and Aligned Binary Black Hole Merger in the Advanced LIGO First Observing Run
- The cosmic merger rate density of compact objects: impact of star formation, metallicity, initial mass function and binary evolution
- The role of mass transfer and common envelope evolution in the formation of merging binary black holes
- It has to be cool: on supergiant progenitors of binary black hole mergers from common-envelope evolution
- The impact of mass-transfer physics on the observable properties of field binary black hole populations
- Black hole mergers from quadruples
- Mass Transfer from Giant Donors
- Exploring the Lower Mass Gap and Unequal Mass Regime in Compact Binary Evolution
- Simple recipes for compact remnant masses and natal kicks
- Joint constraints on the field-cluster mixing fraction, common envelope efficiency, and globular cluster radii from a population of binary hole mergers via deep learning
- Cosmic Rates of Black Hole Mergers and Pair-Instability Supernovae from Chemically Homogeneous Binary Evolution
- Polluting the pair-instability mass gap for binary black holes through super-Eddington accretion in isolated binaries
- Towards a Realistic Explosion Landscape for Binary Population Synthesis
- Binary black hole mergers in AGN accretion discs: gravitational wave rate density estimates
- Ultra-luminous X-ray sources and neutron-star-black-hole mergers from very massive close binaries at low metallicity
- The dependence of convective core overshooting on stellar mass: semi-empirical determination using the diffusive approach with two different element mixtures
- Metallicity-dependent wind parameter predictions for OB stars
- Massive donors in interacting binaries: effect of metallicity
- Massive Stellar Triples Leading to Sequential Binary Black-Hole Mergers in the Field
- Dynamics of black hole - neutron star binaries in young star clusters
- The impact of common envelope development criteria on the formation of LIGO/Virgo sources
- Chemically Homogeneous Evolution: A rapid population synthesis approach
- The time delay distribution and formation metallicity of LIGO-Virgo's binary black holes
- The fates of massive stars: exploring uncertainties in stellar evolution with METISSE
- The thermal equilibrium mass loss model and its applications in binary evolution
- Revisiting the explodability of single massive star progenitors of stripped-envelope supernovae
- The Observed Rate of Binary Black Hole Mergers can be Entirely Explained by Globular Clusters
- Next generation population synthesis of accreting white dwarfs: I. Hybrid calculations using BSE + MESA
- The role of core-collapse physics in the observability of black-hole neutron-star mergers as multi-messenger sources
- Spin misalignment of black hole binaries from young star clusters: implications for the origin of gravitational waves events
- Stellar-mass black holes in young massive and open stellar clusters V: comparisons with LIGO-Virgo merger rate densities
- Constraining accretion efficiency in massive binary stars with LIGO-Virgo black holes
- The hydrodynamic evolution of binary black holes embedded within the vertically stratified disks of active galactic nuclei
- Progenitors of low-mass binary black-hole mergers in the isolated binary evolution scenario
- A Population of Neutron Star Ultraluminous X-ray Sources with A Helium Star Companion
- Successful Common Envelope Ejection and Binary Neutron Star Formation in 3D Hydrodynamics
- New insights on binary black hole formation channels after GWTC-2: young star clusters versus isolated binaries
- Population Synthesis of Black Hole Binaries with Compact Star Companions
Cited by in corpus (26)
- Constraints on the cosmic expansion history from GWTC-3
- The redshift evolution of the binary black hole merger rate: a weighty matter
- POSYDON: A General-Purpose Population Synthesis Code with Detailed Binary-Evolution Simulations
- The Cosmic Evolution of Binary Black Holes in Young, Globular and Nuclear Star Clusters: Rates, Masses, Spins and Mixing Fractions
- Four eccentric mergers increase the evidence that LIGO--Virgo--KAGRA's binary black holes form dynamically
- Compact object mergers: exploring uncertainties from stellar and binary evolution with SEVN
- No peaks without valleys: The stable mass transfer channel for gravitational-wave sources in light of the neutron star-black hole mass gap
- Understanding the high-mass binary black hole population from stable mass transfer and super-Eddington accretion in BPASS
- Suspicious Siblings: The Distribution of Mass and Spin Across Component Black Holes in Isolated Binary Evolution
- Signatures of mass ratio reversal in gravitational waves from merging binary black holes
- The correlation of field binary black hole mergers and how 3G gravitational-wave detectors can constrain it
- The locations of features in the mass distribution of merging binary black holes are robust against uncertainties in the metallicity-dependent cosmic star formation history
- A statistical view on stable and unstable Roche lobe overflow of a tertiary star onto the inner binary in triple systems
- Black hole - black hole total merger mass and the origin of LIGO/Virgo sources
- Dropping Anchor: Understanding the Populations of Binary Black Holes with Random and Aligned Spin Orientations
- The population of merging compact binaries inferred using gravitational waves through GWTC-3
- The Missing Link Between Black Holes in High-Mass X-ray Binaries and Gravitational-Wave Sources: Observational Selection Effects
- On the Mass Ratio Distribution of Black Hole Mergers in Triple Systems
- The role of stellar expansion on the formation of gravitational wave sources
- Backward Population Synthesis: Mapping the Evolutionary History of Gravitational-Wave Progenitors
- Ultra wide black-hole - neutron star binaries as a possible source for gravitational waves and short gamma ray bursts
- Merger rate density of stellar-mass binary black holes from young massive clusters, open clusters, and isolated binaries: comparisons with LIGO-Virgo-KAGRA results
- Active Learning for Computationally Efficient Distribution of Binary Evolution Simulations
- Estimating Transient Rates from Cosmological Simulations and BPASS
- Modelling the host galaxies of binary compact object mergers with observational scaling relations
- Luminous Fast Blue Optical Transients and Type Ibn/Icn SNe from Wolf-Rayet/Black Hole Mergers