How Post-Newtonian Dynamics Shape the Distribution of Stationary Binary Black Hole LISA Sources in nearby Globular Clusters
arXiv:1807.08864 · doi:10.1103/PhysRevD.99.063006
Abstract
We derive the observable gravitational wave (GW) peak frequency () distribution of binary black holes (BBHs) that currently reside inside their globular clusters (GCs), with and without 2.5 Post-Newtonian (2.5PN) effects included in the dynamical evolution of the BBHs. Recent Newtonian studies have reported that a notable number of nearby non-merging BBHs, i.e. those BBHs that are expected to undergo further dynamical interactions before merger, in GCs are likely to be observable by LISA. However, our 2.5PN calculations show that the distribution of for the non-merging BBH population above Hz scales as instead of the scaling found in the Newtonian case. This leads to an approximately two-orders-of-magnitude reduction in the expected number of GW sources at Hz, which lead us to conclude that observing nearby BBHs with LISA is not as likely as has been claimed in the recent literature. In fact, our results suggest that it might be more likely that LISA detects the population of BBHs that will merge before undergoing further interactions. This interestingly suggests that the BBH merger rate derived from LIGO can be used to forecast the number of nearby LISA sources, as well as providing insight into the fraction of BBH mergers forming in GCs.
9 pages. 1 figure
References in corpus (30)
- GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence
- Laser Interferometer Space Antenna
- Primordial Black Holes as Dark Matter
- Gravitational waves from scattering of stellar-mass black holes in galactic nuclei
- Double Compact Objects III: Gravitational Wave Detection Rates
- The progenitors of compact-object binaries: impact of metallicity, common envelope and natal kicks
- MOCCA-SURVEY Database I: Coalescing Binary Black Holes Originating From Globular Clusters
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Eccentric Black Hole Mergers Forming in Globular Clusters
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- Lidov-Kozai Cycles with Gravitational Radiation: Merging Black Holes in Isolated Triple Systems
- Does the Black Hole Merger Rate Evolve with Redshift?
- Black hole mergers from an evolving population of globular clusters
- Black Hole Mergers From Globular Clusters Observable by LISA I: Eccentric Sources Originating From Relativistic -body Dynamics
- Multiband Gravitational-Wave Astronomy: Observing binary inspirals with a decihertz detector, B-DECIGO
- Eccentric Black Hole Gravitational-Wave Capture Sources in Galactic Nuclei: Distribution of Binary Parameters
- MOCCA-SURVEY Database I: Galactic Globular Clusters Harbouring a Black Hole Subsystem
- Constraining stellar binary black hole formation scenarios with eLISA eccentricity measurements
- Orbital eccentricities in primordial black holes binaries
- MOCCA-SURVEY Database I: Eccentric Black Hole Mergers During Binary-Single Interactions In Globular Clusters
- Black Hole Spin Evolution: Implications for Short-hard Gamma Ray Bursts and Gravitational Wave Detection
- MOCCA-SURVEY Database I. Unravelling black hole subsystems in globular clusters
- Black Hole Mergers From Globular Clusters Observable by LISA II: Resolved Eccentric Sources and the Gravitational Wave Background
- Precessional dynamics of black hole triples: binary mergers with near-zero effective spin
- Spin-Orbit Misalignment of Merging Black-Hole Binaries with Tertiary Companions
- An Analytical Portrait of Binary Mergers in Hierarchical Triple Systems
- LISA sources in Milky Way globular clusters
- Induced Ellipticity for Inspiraling Binary Systems
- Black Hole Binaries in Galactic Nuclei and Gravitational Wave Sources
- Evolution of the Black Hole Mass Function in Star Clusters from Multiple Mergers
Cited by in corpus (16)
- The Missing Link in Gravitational-Wave Astronomy: Discoveries waiting in the decihertz range
- Multiband gravitational-wave event rates and stellar physics
- Are stellar-mass black-hole binaries too quiet for LISA?
- Single-single gravitational-wave captures in globular clusters: Eccentric deci-Hertz sources observable by DECIGO and Tian-Qin
- Physics of eccentric binary black hole mergers: A numerical relativity perspective
- Parameter estimation of stellar-mass black hole binaries with LISA
- The Effect of Distant Encounters on Black Hole Binaries in Globular Clusters: Systematic Increase of In-cluster Mergers in the LISA band
- Observation of eccentric binary black hole mergers with second and third generation gravitational wave detector networks
- Physics-inspired deep learning to characterize the signal manifold of quasi-circular, spinning, non-precessing binary black hole mergers
- Convergence of Fourier-domain templates for inspiraling eccentric compact binaries
- Characterization of numerical relativity waveforms of eccentric binary black hole mergers
- Probing the Black Hole Merger History in Clusters using Stellar Tidal Disruptions
- Analytic Waveforms for Eccentric Gravitational Wave Bursts
- Analytic computation of the secular effects of encounters on a binary: third-order perturbation, octupole, and post-Newtonian terms; steady-state distribution
- Non-adiabatic dynamics of eccentric black-hole binaries in post-Newtonian theory
- Astrophysics with the Laser Interferometer Space Antenna