Sensitivity of spin-aligned searches for neutron star-black hole systems using future detectors
arXiv:2207.14645 · doi:10.1103/PhysRevD.106.103035
Abstract
Current searches for gravitational waves from compact-binary objects are primarily designed to detect the dominant gravitational-wave mode and assume that the binary components have spins which are aligned with the orbital angular momentum. These choices lead to observational biases in the observed distribution of sources. Sources with significant spin-orbit precession or unequal-mass-ratios, which have non-negligible contributions from sub-dominant gravitational-wave modes, may be missed; in particular, this may significantly suppress or bias the observed neutron star -- black hole (NSBH) population. We simulate a fiducial population of NSBH mergers and determine the impact of using searches that only account for the dominant-mode and aligned spin. We compare the impact for the Advanced LIGO design, A+, LIGO Voyager, and Cosmic Explorer observatories. We find that for a fiducial population where the spin distribution is isotropic in orientation and uniform in magnitude, we will miss of sources with mass-ratio and up to of highly precessing sources , after accounting for the approximate increase in background. In practice, the true observational bias can be even larger due to strict signal-consistency tests applied in searches. The observation of low spin, unequal-mass-ratio sources by Advanced LIGO design and Advanced Virgo may in part be due to these selection effects. The development of a search sensitive to high mass-ratio, precessing sources may allow the detection of new binaries whose spin properties would provide key insights into the formation and astrophysics of compact objects.
15 pages, 11 figures, 3 tables. Comments welcome
References in corpus (24)
- Advanced LIGO
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- Constraining the Maximum Mass of Neutron Stars From Multi-Messenger Observations of GW170817
- Observation of gravitational waves from two neutron star-black hole coalescences
- Towards models of gravitational waveforms from generic binaries II: Modelling precession effects with a single effective precession parameter
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Multipolar Effective-One-Body Waveforms for Precessing Binary Black Holes: Construction and Validation
- LIGO Detector Characterization in the Second and Third Observing Runs
- 3-OGC: Catalog of gravitational waves from compact-binary mergers
- New binary black hole mergers in the LIGO--Virgo O3a data
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- The MBTA Pipeline for Detecting Compact Binary Coalescences in the Third LIGO-Virgo Observing Run
- A template bank to search for gravitational waves from inspiralling compact binaries I: physical models
- Review of the Advanced LIGO gravitational wave observatories leading to observing run four
- A detailed analysis of GW190521 with phenomenological waveform models
- Exploring Features in the Binary Black Hole Population
- Building a stochastic template bank for detecting massive black hole binaries
- Population Properties of Gravitational-Wave Neutron Star--Black Hole Mergers
- Constraints on compact binary merger evolution from spin-orbit misalignment in gravitational-wave observations
- Interplay of spin-precession and higher harmonics in the parameter estimation of binary black holes
- Eccentric Binary Neutron Star Search Prospects for Cosmic Explorer
- Inferring spin tilts at formation from gravitational wave observations of binary black holes: Interfacing precession-averaged and orbit-averaged spin evolution
- Hierarchical approach to matched filtering using a reduced basis
- Implications of binary black hole detections on the merger rates of double neutron stars and neutron star-black holes
Cited by in corpus (6)
- MLGWSC-1: The first Machine Learning Gravitational-Wave Search Mock Data Challenge
- Blind spots and biases: the dangers of ignoring eccentricity in gravitational-wave signals from binary black holes
- Efficient Stochastic Template Bank using Inner Product Inequalities
- Quasi-periodic oscillation in short gamma-ray bursts from black hole-neutron star mergers
- Tidal reconstruction of neutron star mergers from their late inspiral
- Search for Precessing Binary Black Holes in Advanced LIGO's Third Observing Run using Harmonic Decomposition