Relativistic mergers of black hole binaries have large, similar masses, low spins and are circular
arXiv:1512.04897 · doi:10.1093/mnras/stw503
Abstract
Gravitational waves are a prediction of general relativity, and with ground-based detectors now running in their advanced configuration, we will soon be able to measure them directly for the first time. Binaries of stellar-mass black holes are among the most interesting sources for these detectors. Unfortunately, the many different parameters associated with the problem make it difficult to promptly produce a large set of waveforms for the search in the data stream. To reduce the number of templates to develop, one must restrict some of the physical parameters to a certain range of values predicted by either (electromagnetic) observations or theoretical modeling. In this work we show that "hyperstellar" black holes (HSBs) with masses , i.e black holes significantly larger than the nominal , will have an associated low value for the spin, i.e. . We prove that this is true regardless of the formation channel, and that when two HSBs build a binary, each of the spin magnitudes is also low, and the binary members have similar masses. We also address the distribution of the eccentricities of HSB binaries in dense stellar systems using a large suite of three-body scattering experiments that include binary-single interactions and long-lived hierarchical systems with a highly accurate integrator, including relativistic corrections up to . We find that most sources in the detector band will have nearly zero eccentricities. This correlation between large, similar masses, low spin and low eccentricity will help to accelerate the searches for gravitational-wave signals.
Accepted for publication MNRAS
References in corpus (15)
- Double Compact Objects III: Gravitational Wave Detection Rates
- Binary Black Hole Mergers from Globular Clusters: Implications for Advanced LIGO
- Systematic parameter errors in inspiraling neutron star binaries
- Toward faithful templates for non-spinning binary black holes using the effective-one-body approach
- Dynamics of stellar black holes in young star clusters with different metallicities - II. Black hole-black hole binaries
- Evolution and fate of very massive stars
- Black hole mergers and blue stragglers from hierarchical triples formed in globular clusters
- On the final spin from the coalescence of two black holes
- Black hole triple dynamics: breakdown of the orbit average approximation and implications for gravitational wave detections
- The Cosmic Evolution of Metallicity from the SDSS Fossil Record
- Mergers of Stellar-Mass Black Holes in Nuclear Star Clusters
- Rapid Eccentricity Oscillations and the Mergers of Compact Objects in Hierarchical Triples
- Low metallicity and ultra-luminous X-ray sources in the Cartwheel galaxy
- Dynamics of compact objects clusters: A post-Newtonian study
- Roche-lobe overflow systems powered by black holes in young star clusters: the importance of dynamical exchanges
Cited by in corpus (56)
- Binary Black Hole Population Properties Inferred from the First and Second Observing Runs of Advanced LIGO and Advanced Virgo
- Astrophysical Implications of the Binary Black-Hole Merger GW150914
- Black holes, gravitational waves and fundamental physics: a roadmap
- Rapid and Bright Stellar-mass Binary Black Hole Mergers in Active Galactic Nuclei
- Black Holes: The Next Generation -- Repeated Mergers in Dense Star Clusters and their Gravitational-Wave Properties
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- Massive black hole binaries from runaway collisions: the impact of metallicity
- Post-Newtonian Dynamics in Dense Star Clusters: Formation, Masses, and Merger Rates of Highly-Eccentric Black Hole Binaries
- Post-Newtonian Dynamics in Dense Star Clusters: Highly-Eccentric, Highly-Spinning, and Repeated Binary Black Hole Mergers
- Black hole growth through hierarchical black hole mergers in dense star clusters: implications for gravitational wave detections
- On the Rate of Neutron Star Binary Mergers from Globular Clusters
- Dynamical formation signatures of black hole binaries in the first detected mergers by LIGO
- On the Assembly Rate of Highly Eccentric Binary Black Hole Mergers
- ELGAR -- a European Laboratory for Gravitation and Atom-interferometric Research
- Gravitational Waves and Intermediate-mass Black Hole Retention in Globular Clusters
- MOCCA-SURVEY Database I: Eccentric Black Hole Mergers During Binary-Single Interactions In Globular Clusters
- Modeling Dense Star Clusters in the Milky Way and Beyond with the Cluster Monte Carlo Code
- Post-Newtonian Dynamics in Dense Star Clusters: Binary Black Holes in the LISA Band
- Fingerprints of binary black hole formation channels encoded in the mass and spin of merger remnants
- Detecting triple systems with gravitational wave observations
- Millisecond Pulsars and Black Holes in Globular Clusters
- Astrophysics and cosmology with a decihertz gravitational-wave detector: TianGO
- Binary Black Hole Mergers from Globular Clusters: the Impact of Globular Cluster Properties
- How black holes shape globular clusters: Modeling NGC 3201
- The MEGaN project II. Gravitational waves from intermediate mass- and binary black holes around a supermassive black hole
- Picky Partners: The Pairing of Component Masses in Binary Black Hole Mergers
- Mass-redshift Degeneracy for Gravitational-wave Sources in the Vicinity of a Supermassive Black Hole
- Stellar Black Hole Binary Mergers in Open Clusters
- A New Type of Extreme-mass-ratio Inspirals Produced by Tidal Capture of Binary Black Holes
- Accuracy of Estimating Highly Eccentric Binary Black Hole Parameters with Gravitational-Wave Detections
- Revealing the formation of stellar-mass black hole binaries: The need for deci-Hertz gravitational wave observatories
- Can Neutron-Star Mergers Explain the r-process Enrichment in Globular Clusters?
- MOCCA-SURVEY Database I: Assessing GW kick retention fractions for BH-BH mergers in globular clusters
- Using final black hole spins and masses to infer the formation history of the observed population of gravitational wave sources
- Breaching the limit: formation of GW190521-like and IMBH mergers in young massive clusters
- Stellar Escape from Globular Clusters. I. Escape Mechanisms and Properties at Ejection
- Phase shift of gravitational waves induced by aberration
- Eccentric black hole mergers via three-body interactions in young, globular, and nuclear star clusters
- Evidence for eccentricity in the population of binary black holes observed by LIGO-Virgo-KAGRA
- MOCCA SURVEY Database I: Binary Black Hole Mergers from Globular Clusters with Intermediate Mass Black Holes
- Detecting the Beaming Effect of Gravitational Waves
- Testing general relativity using binary extreme-mass-ratio inspirals
- Compact Object Modeling in the Globular Cluster 47 Tucanae
- Fundamental frequencies and resonances from eccentric and precessing binary black hole inspirals
- High mass but low spin: an exclusion region to rule out hierarchical black-hole mergers as a mechanism to populate the pair-instability mass gap
- The Redshift Evolution of the Binary Black Hole Mass Distribution from Dense Star Clusters
- Divergence in mass ratio distributions between low-mass and high-mass coalescing binary black holes
- Efficient gravitational-wave model for fully-precessing and moderately-eccentric, compact binary inspirals
- Motion deviation of test body induced by spin and cosmological constant in extreme mass ratio inspiral binary system
- Lower-mass-gap Black Holes in Dense Star Clusters
- Moving gravitational wave sources at cosmological distances: Impact on the measurement of the Hubble constant
- Dynamical Formation Scenarios for GW190521 and Prospects for Decihertz Gravitational-Wave Astronomy with GW190521-Like Binaries
- Single Millisecond Pulsars from Dynamical Interaction Processes in Dense Star Clusters
- Accretion induced black hole spin up revised by numerical GR MHD simulations
- Retrieving the True Masses of Gravitational-wave Sources
- GraviDy, a GPU modular, parallel direct-summation body integrator: Dynamics with softening