Suspicious Siblings: The Distribution of Mass and Spin Across Component Black Holes in Isolated Binary Evolution
arXiv:2203.02515 · doi:10.3847/1538-4357/ac6f5d
Abstract
The LIGO and Virgo gravitational-wave detectors have uncovered binary black hole systems with definitively nonzero spins, as well as systems with significant spin residing in the more massive black hole of the pair. We investigate the ability of isolated binary evolution in forming such highly spinning, asymmetric-mass systems through both accretion onto the first-born black hole and tidal spin-up of the second-born black hole using a rapid population synthesis approach with detailed considerations of spin-up through tidal interactions. Even with the most optimistic assumptions regarding the efficiency at which an accreting star receives material from a donor, we find that it is difficult to form systems with significant mass asymmetry and moderate or high spins in the primary black hole component. Assuming efficient angular momentum transport within massive stars and Eddington-limited accretion onto black holes, we find that of systems in the underlying binary black hole population have a primary black hole spin greater than 0.2 and a mass asymmetry of greater than 2:1 in our most optimistic models, with most models finding that this criteria is only met in of systems. The production of systems with significant mass asymmetries and spin in the primary black hole component is thus an unlikely byproduct of isolated evolution unless highly super-Eddington accretion is invoked or angular momentum transport in massive stars is less efficient than typically assumed.
20 pages, 9 figures, published in ApJ
References in corpus (41)
- 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
- Binary interaction dominates the evolution of massive stars
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Slowing the Spins of Stellar Cores
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- 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
- 3-OGC: Catalog of gravitational waves from compact-binary mergers
- Where are LIGO's Big Black Holes?
- The cosmic merger rate density of compact objects: impact of star formation, metallicity, initial mass function and binary evolution
- The impact of mass-transfer physics on the observable properties of field binary black hole populations
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- Exploring the Lower Mass Gap and Unequal Mass Regime in Compact Binary Evolution
- Asymmetric Accretion Flows within a Common Envelope
- 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
- Polluting the pair-instability mass gap for binary black holes through super-Eddington accretion in isolated binaries
- Gamma-Ray Bursts from tidally spun-up Wolf-Rayet stars?
- Binary Black Hole Formation with Detailed Modeling: Stable Mass Transfer Leads to Lower Merger Rates
- Double-core evolution and the formation of neutron-star binaries with compact companions
- Observing intermediate-mass black holes and the upper--stellar-mass gap with LIGO and Virgo
- The spins of compact objects born from helium stars in binary systems
- The implications of high BH spins on the origin of BH-BH mergers
- The Uncertain Future of Massive Binaries Obscures the Origin of LIGO/Virgo Sources
- Merger rate density of binary black holes through isolated Population I, II, III and extremely metal-poor binary star evolution
- An alternative interpretation of GW190412 as a binary black hole merger with a rapidly spinning secondary
- GW190412 as a Third-Generation Black Hole Merger from a Super Star Cluster
- You Can't Always Get What You Want: The Impact of Prior Assumptions on Interpreting GW190412
- Wind mass-loss rates of stripped stars inferred from Cygnus X-1
- Pathways for producing binary black holes with large misaligned spins in the isolated formation channel
- Was GW190412 born from a hierarchical 3+1 quadruple configuration?
- Gravitational-wave Merger Forecasting: Scenarios for the early detection and localization of compact-binary mergers with ground based observatories
- Comparing Compact Object Distributions from Mass- and Presupernova Core Structure-based Prescriptions
- Common-envelope Dynamics of a Stellar-mass Black Hole: General Relativistic Simulations
- A Channel to Form Fast-spinning Black Hole--Neutron Star Binary Mergers as Multi-messenger Sources
- Constraining accretion efficiency in massive binary stars with LIGO-Virgo black holes
- On the Angular Momentum Transport Efficiency within the Star Constrained from Gravitational-wave Observations
- Hypercritical Accretion for Black Hole High Spin in Cygnus X-1
- Being Careful with the Field Formation Interpretation of GW190412
- GW190521 formation scenarios via relativistic accretion
Cited by in corpus (43)
- Four eccentric mergers increase the evidence that LIGO--Virgo--KAGRA's binary black holes form dynamically
- Cover Your Basis: Comprehensive Data-Driven Characterization of the Binary Black Hole Population
- 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
- No evidence that the majority of black holes in binaries have zero spin
- Do unequal-mass binary black hole systems have larger ? Probing correlations with copulas in gravitational-wave astronomy
- The role of supernova convection for the lower mass gap in the isolated binary formation of gravitational wave sources
- Compact Binary Coalescences: Astrophysical Processes and Lessons Learned
- Signatures of mass ratio reversal in gravitational waves from merging binary black holes
- Potential Subpopulations and Assembling Tendency of the Merging Black Holes
- Limits on hierarchical black hole mergers from the most negative systems
- Evidence for a correlation between binary black hole mass ratio and black-hole spins
- The correlation of field binary black hole mergers and how 3G gravitational-wave detectors can constrain it
- GW241011 and GW241110: Exploring Binary Formation and Fundamental Physics with Asymmetric, High-Spin Black Hole Coalescence
- Unequal-mass, highly-spinning binary black hole mergers in the stable mass transfer formation channel
- Do high-spin high-mass X-ray binaries contribute to the population of merging binary black holes?
- Constraints on the contributions to the observed binary black hole population from individual evolutionary pathways in isolated binary evolution
- The most luminous AGN do not produce the majority of the detected stellar-mass black hole binary mergers in the local Universe
- The Missing Link Between Black Holes in High-Mass X-ray Binaries and Gravitational-Wave Sources: Observational Selection Effects
- PixelPop: High Resolution Nonparameteric Inference of Gravitational-Wave Populations in Multiple Dimensions
- Which black hole is spinning? Probing the origin of black-hole spin with gravitational waves
- Nonparametric analysis of correlations in the binary black hole population with LIGO-Virgo-KAGRA data
- Gravitational waves carry information beyond effective spin parameters but it is hard to extract
- Merging binary black holes formed through double-core evolution
- Exploring the evolution of gravitational-wave emitters with efficient emulation: Constraining the origins of binary black holes using normalising flows
- Spin Doctors: How to diagnose a hierarchical merger origin
- Understanding the progenitor formation galaxies of merging binary black holes
- Exploring field-evolution and dynamical-capture coalescing binary black holes in GWTC-3
- One to many: comparing single gravitational-wave events to astrophysical populations
- Symmetry breaking in merging binary black holes from young massive clusters and isolated binaries
- Searching for candidates of coalescing binary black holes formed through chemically homogeneous evolution in GWTC-3
- Do both black holes spin in merging binaries? Evidence from GWTC-4 and astrophysical implications
- Inferring small neutron star spins with neutron star-black hole mergers
- Origin of Black Hole Spin in Lower-Mass-Gap Black Hole-Neutron Star Binaries
- Seeking Spinning Subpopulations of Black Hole Binaries via Iterative Density Estimation
- Looking To The Horizon: Probing Evolution in the Black Hole Spectrum With Gravitational Wave Catalogs
- On the Astrophysical Origin of Binary Black Hole Subpopulations: A Tale of Three Channels?
- Probing Spin-Orbit Resonances with the Binary Black Hole Population
- Reassessing the Spin of Second-born Black Holes in Coalescing Binary Black Holes and Its Connection to the chi_eff-q Correlation
- Which black hole formed first? Mass-ratio reversal in massive binary stars from gravitational-wave data
- Where are Gaia's small black holes?
- Characterizing Binary Black Hole Subpopulations in GWTC-4 with Binned Gaussian Processes: On the Origins of the Peak
- Signatures of spin precession and nutation in isolated black-hole binaries