Detectability of gravitational waves from binary black holes: Impact of precession and higher modes
arXiv:1612.02340 · doi:10.1103/PhysRevD.95.104038
Abstract
Gravitational wave templates used in current searches for binary black holes omit the effects of precession of the orbital plane and higher order modes. While this omission seems not to impact the detection of sources having mass ratios and spins similar to those of GW150914, even for total masses ; we show that it can cause large fractional losses of sensitive volume for binaries with mass ratio and , measured the detector frame. For the highest precessing cases, this is true even when the source is face-on to the detector. Quantitatively, we show that the aforementioned omission can lead to fractional losses of sensitive volume of , reaching for the worst cases studied. Loss estimates are obtained by evaluating the effectualness of the SEOBNRv2-ROM double spin model, currently used in binary black hole searches, towards gravitational wave signals from precessing binaries computed by means of numerical relativity. We conclude that, for sources with , a reliable search for binary black holes heavier than needs to consider the effects of higher order modes and precession. The latter seems specially necessary when Advanced LIGO reaches its design sensitivity.
10 pages, 4 Figures
References in corpus (14)
- An improved effective-one-body model of spinning, nonprecessing binary black holes for the era of gravitational-wave astrophysics with advanced detectors
- Inspiral, merger and ringdown of unequal mass black hole binaries: a multipolar analysis
- Towards models of gravitational waveforms from generic binaries II: Modelling precession effects with a single effective precession parameter
- Phenomenological template family for black-hole coalescence waveforms
- High-accuracy waveforms for binary black hole inspiral, merger, and ringdown
- Validating the effective-one-body model of spinning, precessing binary black holes against numerical relativity
- Towards models of gravitational waveforms from generic binaries: A simple approximate mapping between precessing and non-precessing inspiral signals
- Where post-Newtonian and numerical-relativity waveforms meet
- Zoom-Whirl Orbits in Black Hole Binaries
- Gravitational-wave observations of binary black holes: Effect of non-quadrupole modes
- Spin effects on gravitational waves from inspiraling compact binaries at second post-Newtonian order
- Matched Filtering of Numerical Relativity Templates of Spinning Binary Black Holes
- Simulations of black-hole binaries with unequal masses or non-precessing spins: accuracy, physical properties, and comparison with post-Newtonian results
- New frontiers in Numerical Relativity
Cited by in corpus (71)
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- GW190412: Observation of a Binary-Black-Hole Coalescence with Asymmetric Masses
- Properties and astrophysical implications of the 150 Msun binary black hole merger GW190521
- Computationally efficient models for the dominant and sub-dominant harmonic modes of precessing binary black holes
- Surrogate models for precessing binary black hole simulations with unequal masses
- Surrogate model of hybridized numerical relativity binary black hole waveforms
- Enriching the Symphony of Gravitational Waves from Binary Black Holes by Tuning Higher Harmonics
- Black hole ringdown: the importance of overtones
- First higher-multipole model of gravitational waves from spinning and coalescing black-hole binaries
- Where are LIGO's Big Black Holes?
- Including higher order multipoles in gravitational-wave models for precessing binary black holes
- Gravitational-wave astrophysics with effective-spin measurements: asymmetries and selection biases
- Localizing merging black holes with sub-arcsecond precision using gravitational-wave lensing
- On the properties of the massive binary black hole merger GW170729
- Confusing Head-On Collisions with Precessing Intermediate-Mass Binary Black Hole Mergers
- Black-hole spectroscopy, the no-hair theorem and GW150914: Kerr vs. Occam
- A Multipolar Effective One Body Model for Non-Spinning Black Hole Binaries
- Searching for the full symphony of black hole binary mergers
- Measuring gravitational-wave higher-order modes
- Search for intermediate mass black hole binaries in the first and second observing runs of the Advanced LIGO and Virgo network
- Effects of nonquadrupole modes in the detection and parameter estimation of black hole binaries with nonprecessing spins
- A hybrid post-Newtonian -- effective-one-body scheme for spin-precessing compact-binary waveforms
- Gravitational-wave memory: waveforms and phenomenology
- Parameter Estimation with a spinning multi-mode waveform model: IMRPhenomHM
- Tracking black hole kicks from gravitational wave observations
- Impact of subdominant modes on the interpretation of gravitational-wave signals from heavy binary black hole systems
- : Bayesian inference of multimessenger astrophysical data, methods and application to gravitational-waves
- Accurate modeling and mitigation of overlapping signals and glitches in gravitational-wave data
- Post-Newtonian templates for binary black-hole inspirals: the effect of the horizon fluxes and the secular change in the black-hole masses and spins
- Sensitivity of gravitational wave searches to the full signal of intermediate mass black hole binaries during the LIGO O1 Science Run
- New effective precession spin for modeling multimodal gravitational waveforms in the strong-field regime
- NuRIA: Numerical Relativity Injection Analysis of spinning binary black hole signals in Advanced LIGO data
- Compact Binary Waveform Center-of-Mass Corrections
- Reconstructing gravitational wave signals from binary black hole mergers with minimal assumptions
- On the Potential Observation of False Deviations from General Relativity in Gravitational Wave Observations from Binary Black Holes
- First gravitational-wave search for intermediate-mass black hole mergers with higher order harmonics
- ESIGMAHM: An Eccentric, Spinning inspiral-merger-ringdown waveform model with Higher Modes for the detection and characterization of binary black holes
- Mapping the Universe Expansion: Enabling percent-level measurements of the Hubble Constant with a single binary neutron-star merger detection
- Interplay of spin-precession and higher harmonics in the parameter estimation of binary black holes
- Understanding how fast black holes spin by analysing data from the second gravitational-wave catalogue
- Systematic challenges for future gravitational wave measurements of precessing binary black holes
- Characterization of binary black holes by heterogeneous gravitational-wave networks
- Statistical and systematic uncertainties in extracting the source properties of neutron star - black hole binaries with gravitational waves
- Measuring the properties of nearly extremal black holes with gravitational waves
- Improved analysis of GW190412 with a precessing numerical relativity surrogate waveform model
- Endpoint of the up-down instability in precessing binary black holes
- Post-merger chirps from binary black holes as probes of the final black-hole horizon
- New search pipeline for gravitational waves with higher-order modes using mode-by-mode filtering
- Impact of ringdown higher-order modes on black-hole mergers in dense environments: the scalar field case, detectability and parameter biases
- Inspiral-Merger-Ringdown Consistency Tests with Higher Modes on Gravitational Signals from the Second Observing Run of LIGO and Virgo
- Gravitational-wave parameter inference with the Newman-Penrose scalar
- Effect of double spin-precession and higher harmonics on spin-induced quadrupole moment measurements
- Measuring Spin of the Remnant Black Hole from Maximum Amplitude
- Detectability of gravitational higher order modes in the third-generation era
- Prospects for measuring off-axis spins of binary black holes with Plus-era gravitational-wave detectors
- A fully precessing higher-mode surrogate model of effective-one-body waveforms
- Sensitivity of spin-aligned searches for neutron star-black hole systems using future detectors
- High-precision source characterization of intermediate mass-ratio black hole coalescences with gravitational waves: The importance of higher-order multipoles
- Quasi-periodic oscillation in short gamma-ray bursts from black hole-neutron star mergers
- Precessing binary black holes as engines of electromagnetic helicity
- Reconstruction of binary black hole harmonics in LIGO using deep learning
- New approach to template banks of gravitational waves with higher harmonics: Reducing matched-filtering cost by over an order of magnitude
- Gravitational waveforms from the inspiral of compact binaries in the Brans-Dicke theory in an expanding Universe
- Fast and accurate parameter estimation of high-redshift sources with the Einstein Telescope
- A complete measurement of a black-hole recoil through higher-order gravitational-wave modes
- Systematic biases in parameter estimation on LISA binaries: The effect of excluding higher harmonics for non-spinning binaries
- Gravitational-wave signatures of mirror (a)symmetry in binary black hole mergers: measurability and correlation to gravitational-wave recoil
- Merging Black Holes: Assessing the Performance of Two Analytic Gravitational Waves Models
- Mapping Parameter Correlations in Spinning Binary Black Hole Mergers
- Applying higher-modes consistency test on GW190814 : lessons on no-hair theorem, nature of the secondary compact object and waveform modeling
- Search for Precessing Binary Black Holes in Advanced LIGO's Third Observing Run using Harmonic Decomposition