Explaining LIGO's observations via isolated binary evolution with natal kicks
arXiv:1709.01943 · doi:10.1103/PhysRevD.97.043014
Abstract
We compare binary evolution models with different assumptions about black-hole natal kicks to the first gravitational-wave observations performed by the LIGO detectors. Our comparisons attempt to reconcile merger rate, masses, spins, and spin-orbit misalignments of all current observations with state-of-the-art formation scenarios of binary black holes formed in isolation. We estimate that black holes (BHs) should receive natal kicks at birth of the order of (50) km/s if tidal processes do (not) realign stellar spins. Our estimate is driven by two simple factors. The natal kick dispersion is bounded from above because large kicks disrupt too many binaries (reducing the merger rate below the observed value). Conversely, the natal kick distribution is bounded from below because modest kicks are needed to produce a range of spin-orbit misalignments. A distribution of misalignments increases our models' compatibility with LIGO's observations, if all BHs are likely to have natal spins. Unlike related work which adopts a concrete BH natal spin prescription, we explore a range of possible BH natal spin distributions. Within the context of our models, for all of the choices of used here and within the context of one simple fiducial parameterized spin distribution, observations favor low BH natal spin.
19 pages, 14 figures, as published in PRD
References in corpus (77)
- Scikit-learn: Machine Learning in Python
- Observation of Gravitational Waves from a Binary Black Hole Merger
- The Gaia mission
- GW151226: Observation of Gravitational Waves from a 22-Solar-Mass Binary Black Hole Coalescence
- GW170104: Observation of a 50-Solar-Mass Binary Black Hole Coalescence at Redshift 0.2
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- A statistical study of 233 pulsar proper motions
- Did LIGO detect dark matter?
- Binary Black Hole Mergers in the first Advanced LIGO Observing Run
- Properties of the Binary Black Hole Merger GW150914
- Compact Remnant Mass Function: Dependence on the Explosion Mechanism and Metallicity
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- The first gravitational-wave source from the isolated evolution of two 40-100 Msun stars
- Astrophysical Implications of the Binary Black-Hole Merger GW150914
- Compact Object Modeling with the StarTrack Population Synthesis Code
- Double Compact Objects I: The Significance Of The Common Envelope On Merger Rates
- A simple model of complete precessing black-hole-binary gravitational waveforms
- A new route towards merging massive black holes
- An improved effective-one-body model of spinning, nonprecessing binary black holes for the era of gravitational-wave astrophysics with advanced detectors
- Merging binary black holes formed through chemically homogeneous evolution in short-period stellar binaries
- Effective-one-body model for black-hole binaries with generic mass ratios and spins
- Double Compact Objects III: Gravitational Wave Detection Rates
- Double Compact Objects II: Cosmological Merger Rates
- The Rate of Binary Black Hole Mergers Inferred from Advanced LIGO Observations Surrounding GW150914
- GW150914: Implications for the stochastic gravitational wave background from binary black holes
- The Effect of Pair-Instability Mass Loss on Black Hole Mergers
- Formation of the first three gravitational-wave observations through isolated binary evolution
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Analysis of spin precession in binary black hole systems including quadrupole-monopole interaction
- Distinguishing Spin-Aligned and Isotropic Black Hole Populations With Gravitational Waves
- BPASS predictions for Binary Black-Hole Mergers
- Dynamical Formation of the GW150914 Binary Black Hole
- Compact Binary Merger Rates: Comparison with LIGO/Virgo Upper Limits
- On the rarity of double black hole binaries: consequences for gravitational-wave detection
- Investigating stellar-mass black hole kicks
- Inferring the eccentricity distribution
- A Numerical Relativity Waveform Surrogate Model for Generically Precessing Binary Black Hole Mergers
- Compact Binary Coalescences in the Band of Ground-based Gravitational-Wave Detectors
- Hierarchical analysis of gravitational-wave measurements of binary black hole spin-orbit misalignments
- Determining the population properties of spinning black holes
- Use of gravitational waves to probe the formation channels of compact binaries
- Constraining Formation Models of Binary Black Holes with Gravitational-Wave Observations
- Distinguishing Between Formation Channels for Binary Black Holes with LISA
- eLISA eccentricity measurements as tracers of binary black hole formation
- A Surrogate Model of Gravitational Waveforms from Numerical Relativity Simulations of Precessing Binary Black Hole Mergers
- Directly comparing GW150914 with numerical solutions of Einstein's equations for binary black hole coalescence
- Resonant-plane locking and spin alignment in stellar-mass black-hole binaries: a diagnostic of compact-binary formation
- Binary compact object coalescence rates: The role of elliptical galaxies
- Multi-timescale analysis of phase transitions in precessing black-hole binaries
- Observational Evidence for Tidal Interaction in Close Binary Systems
- Effective potentials and morphological transitions for binary black-hole spin precession
- GW150914: Spin based constraints on the merger time of the progenitor system
- Metallicity-constrained merger rates of binary black holes and the stochastic gravitational wave background
- Constraining population synthesis models via empirical binary compact object merger and supernovae rates
- Black Hole Spin Evolution: Implications for Short-hard Gamma Ray Bursts and Gravitational Wave Detection
- Accounting for Source Uncertainties in Analyses of Astronomical Survey Data
- The Galactic distribution of X-ray binaries and its implications for compact object formation and natal kicks
- Distinguishing compact binary population synthesis models using gravitational-wave observations of coalescing binary black holes
- Understanding Compact Object Formation and Natal Kicks. III. The case of Cygnus X-1
- Short Gamma-Ray Bursts and Binary Mergers in Spiral and Elliptical Galaxies: Redshift Distribution and Hosts
- Explaining LIGO's observations via isolated binary evolution with natal kicks
- Constraining the formation of black-holes in short-period Black-Hole Low-Mass X-ray Binaries
- PRECESSION: Dynamics of spinning black-hole binaries with python
- Impact of Bayesian prior on the characterization of binary black hole coalescences
- When and where did GW150914 form?
- Inferences about supernova physics from gravitational-wave measurements: GW151226 spin misalignment as an indicator of strong black-hole natal kicks
- Gravitational waves from BH-NS binaries: Effective Fisher matrices and parameter estimation using higher harmonics
- Implementing a search for gravitational waves from non-precessing, spinning binary black holes
- Understanding Compact Object Formation and Natal Kicks. IV. The case of IC 10 X-1
- Distinguishing black-hole spin-orbit resonances by their gravitational-wave signatures
- Constraining population synthesis models via the binary neutron star population
- Bounds on Expected Black Hole Spins in Inspiraling Binaries
- BANANA IV: Two aligned stellar rotation axes in the young eccentric binary system EP Crucis: primordial orientation and tidal alignment
- Distinguishing black-hole spin-orbit resonances by their gravitational wave signatures. II: Full parameter estimation
- Systematic challenges for future gravitational wave measurements of precessing binary black holes
- Comparing compact binary parameter distributions I: Methods
- Supernova Kicks and Misaligned Microquasars
Cited by in corpus (79)
- Bilby: A user-friendly Bayesian inference library for gravitational-wave astronomy
- Observation of gravitational waves from two neutron star-black hole coalescences
- Black holes, gravitational waves and fundamental physics: a roadmap
- The evolutionary roads leading to low effective spins, high black hole masses, and O1/O2 rates of LIGO/Virgo binary black holes
- Massive runaways and walkaway stars
- Measuring the binary black hole mass spectrum with an astrophysically motivated parameterization
- Rates of Compact Object Coalescences
- Spin orientations of merging black holes formed from the evolution of stellar binaries
- Cosmic Conundra Explained by Thermal History and Primordial Black Holes
- A Highly Spinning and Aligned Binary Black Hole Merger in the Advanced LIGO First Observing Run
- 1-OGC: The first open gravitational-wave catalog of binary mergers from analysis of public Advanced LIGO data
- Reconstructing phenomenological distributions of compact binaries via gravitational wave observations
- The impact of pair-instability mass loss on the binary black hole mass distribution
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- Potential Kick Velocity distribution of black hole X-ray binaries and implications for natal kicks
- Measuring eccentricity in binary black hole inspirals with gravitational waves
- Gravitational-wave astrophysics with effective-spin measurements: asymmetries and selection biases
- Parallelized Inference for Gravitational-Wave Astronomy
- Gravitational-wave detection rates for compact binaries formed in isolation: LIGO/Virgo O3 and beyond
- Multiband gravitational-wave event rates and stellar physics
- Explaining LIGO's observations via isolated binary evolution with natal kicks
- The Science of the Einstein Telescope
- Mining Gravitational-wave Catalogs To Understand Binary Stellar Evolution: A New Hierarchical Bayesian Framework
- The mass gap, the spin gap, and the origin of merging binary black holes
- Binary Black Hole Mergers from LIGO/Virgo O1 and O2: Population Inference Combining Confident and Marginal Events
- Constraining the fraction of binary black holes formed in isolation and young star clusters with gravitational-wave data
- No evidence that the majority of black holes in binaries have zero spin
- Unraveling the origin of black holes from effective spin measurements with LIGO-Virgo
- Mass and star formation rate of the host galaxies of compact binary mergers across cosmic time
- Using final black hole spins and masses to infer the formation history of the observed population of gravitational wave sources
- Compact Binary Coalescences: Astrophysical Processes and Lessons Learned
- Pathways for producing binary black holes with large misaligned spins in the isolated formation channel
- Gravitational wave population inference with deep flow-based generative network
- Gravitational-wave inference in the catalog era: evolving priors and marginal events
- Digging the population of compact binary mergers out of the noise
- Core-Collapse Supernovae in Binaries as the Origin of Galactic Hyper-Runaway Stars
- Black hole spins in coalescing binary black holes
- X-ray Detectability of Accreting Isolated Black Holes in Our Galaxy
- Spin misalignment of black hole binaries from young star clusters: implications for the origin of gravitational waves events
- Tossing Black Hole Spin Axes
- Constraining accretion efficiency in massive binary stars with LIGO-Virgo black holes
- Machine-learning interpolation of population-synthesis simulations to interpret gravitational-wave observations: a case study
- Constraints on compact binary merger evolution from spin-orbit misalignment in gravitational-wave observations
- Constraints on the contributions to the observed binary black hole population from individual evolutionary pathways in isolated binary evolution
- Efficient multi-timescale dynamics of precessing black-hole binaries
- Exploring stellar evolution with gravitational-wave observations
- Dropping Anchor: Understanding the Populations of Binary Black Holes with Random and Aligned Spin Orientations
- dart_board: Binary Population Synthesis with Markov Chain Monte Carlo
- Orbital eccentricity in a neutron star - black hole merger
- Finding Black Holes with Black Boxes -- Using Machine Learning to Identify Globular Clusters with Black Hole Subsystems
- Unmodelled Clustering Methods for Gravitational Wave Populations of Compact Binary Mergers
- Black Hole Mergers Induced by Tidal Encounters with a Galactic Centre Black Hole
- Biases in estimates of black hole kicks from the spin distribution of binary black holes
- Exploring the evolution of gravitational-wave emitters with efficient emulation: Constraining the origins of binary black holes using normalising flows
- A taxonomy of black-hole binary spin precession and nutation
- Wide nutation: binary black-hole spins repeatedly oscillating from full alignment to full anti-alignment
- The Origin of Binary Black Holes Mergers
- New insights on binary black hole formation channels after GWTC-2: young star clusters versus isolated binaries
- Population properties of neutron stars in the coalescing compact binaries
- Infrared outbursts as potential tracers of common envelope events in high-mass X-ray binary formation
- Classifying binary black holes from Population III stars with the Einstein Telescope: A machine-learning approach
- Testing the robustness of simulation-based gravitational-wave population inference
- A Nuclear Equation of State Inferred from Stellar r-process Abundances
- The initial mass-remnant mass relation for core collapse supernovae
- Eccentricity matters: Impact of eccentricity on inferred binary black hole populations
- Strong and weak lensing of Gravitational Waves: a semi-analytical approach
- Formation of the First Two Black Hole-Neutron Star Mergers (GW200115 and GW200105) from Isolated Binary Evolution
- Natal kicks of compact objects
- Gravitational Waves from Supernova Mass Loss and Natal Kicks in Close Binaries
- Surprises from the spins: astrophysics and relativity with detections of spinning black-hole mergers
- Analysis and simulations of binary black hole merger spins -- the question of spin-axis tossing at black hole formation
- On the Astrophysical Origin of Binary Black Hole Subpopulations: A Tale of Three Channels?
- Inferring the spins of merging black holes in the presence of data-quality issues
- Single-event likelihood of star cluster properties with LIGO-Virgo-Kagra binary black hole observations
- Inferences about the distribution, merger rate, and evolutionary processes of compact binaries from gravitational wave observations
- Cosmology from Strong Interactions
- Population Properties of Binary Black Holes with Eccentricity
- Measuring spin precession from massive black hole binaries with gravitational waves: insights from time-domain signal morphology
- Inferring binary black holes stellar progenitors with gravitational wave sources