A Study of Systematics on the Cosmological Inference of the Hubble Constant from Gravitational Wave Standard Sirens
arXiv:2312.11627
Abstract
Gravitational waves (GWs) from compact binary coalescences (CBCs) can constrain the cosmic expansion of the universe. In the absence of an associated electromagnetic counterpart, the spectral sirens method exploits the relation between the detector frame and the source frame masses to jointly infer the parameters of the mass distribution of black holes (BH) and the cosmic expansion parameter . This technique relies on the choice of the parametrization for the source mass population of BHs observed in binary black holes merger (BBHs). Using astrophysically motivated BBH populations, we study the possible systematic effects affecting the inferred value for when using heuristic mass models like a broken power law, a power law plus peak and a multi-peak distributions. We find that with 2000 detected GW mergers, the resulting obtained with a spectral sirens analysis can be biased up to . The main sources of this bias come from the failure of the heuristic mass models used so far to account for a possible redshift evolution of the mass distribution and from their inability to model unexpected mass features. We conclude that future dark siren GW cosmology analyses should make use of source mass models able to account for redshift evolution and capable to adjust to unforeseen mass features.
21 pages, 14 figures
References in corpus (24)
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
- A gravitational-wave standard siren measurement of the Hubble constant
- Swope Supernova Survey 2017a (SSS17a), the Optical Counterpart to a Gravitational Wave Source
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- Measurements of the Hubble Constant: Tensions in Perspective
- Double Compact Objects III: Gravitational Wave Detection Rates
- Mind the gap: The location of the lower edge of the pair instability supernovae black hole mass gap
- Very massive stars, pair-instability supernovae and intermediate-mass black holes with the SEVN code
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- Constraints on the cosmic expansion history from GWTC-3
- GWTC-2.1: Deep Extended Catalog of Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- The cosmic merger rate of stellar black hole binaries from the Illustris simulation
- Hierarchical black hole mergers in young, globular and nuclear star clusters: the effect of metallicity, spin and cluster properties
- Gravitational-wave phasing for low-eccentricity inspiralling compact binaries to 3PN order
- Cosmology in the dark: On the importance of source population models for gravitational-wave cosmology
- Spectral sirens: cosmology from the full mass distribution of compact binaries
- Inferring the properties of a population of compact binaries in presence of selection effects
- Observing intermediate-mass black holes and the upper--stellar-mass gap with LIGO and Virgo
- Binary black holes population and cosmology in new lights: Signature of PISN mass and formation channel in GWTC-3
- Cosmology and modified gravitational wave propagation from binary black hole population models
- Current and future constraints on cosmology and modified gravitational wave friction from binary black holes
- The redshift dependence of black hole mass distribution: Is it reliable for standard sirens cosmology?
- GWSim: Python package for creating mock GW samples for different astrophysical populations and cosmological models of binary black holes