Spectral sirens: cosmology from the full mass distribution of compact binaries
arXiv:2202.08240 · doi:10.1103/PhysRevLett.129.061102
Abstract
We explore the use of the mass spectrum of neutron stars and black holes in gravitational-wave compact binary sources as a cosmological probe. These standard siren sources provide direct measurements of luminosity distance. In addition, features in the mass distribution, such as mass gaps or peaks, will redshift, and thus provide independent constraints on their redshift distribution. We argue that the entire mass spectrum should be utilized to provide cosmological constraints. For example, we find that the mass spectrum of LIGO--Virgo--KAGRA events introduces at least five independent mass ``features'': the upper and lower edges of the pair instability supernova (PISN) gap, the upper and lower edges of the neutron star--black hole gap, and the minimum neutron star mass. We find that although the PISN gap dominates the cosmological inference with current detectors (2G), as shown in previous work, it is the lower mass gap that will provide the most powerful constraints in the era of Cosmic Explorer and Einstein Telescope (3G). By using the full mass distribution, we demonstrate that degeneracies between mass evolution and cosmological evolution can be broken, unless an astrophysical conspiracy shifts all features of the full mass distribution simultaneously following the (non-trivial) Hubble diagram evolution. We find that this self-calibrating ``spectral siren'' method has the potential to provide precision constraints of both cosmology and the evolution of the mass distribution, with 2G achieving better than precision on at within a year, and 3G reaching at within one month.
Matches PRL published version
References in corpus (25)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Cosmic Star Formation History
- Dark Energy and the Accelerating Universe
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- The Effect of Pair-Instability Mass Loss on Black Hole Mergers
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- First measurement of the Hubble constant from a dark standard siren using the Dark Energy Survey galaxies and the LIGO/Virgo binary-black-hole merger GW170814
- Baryon acoustic oscillations from the complete SDSS-III Ly-quasar cross-correlation function at
- Rates of Compact Object Coalescences
- Where are LIGO's Big Black Holes?
- The redshift evolution of the binary black hole merger rate: a weighty matter
- Cosmology in the dark: On the importance of source population models for gravitational-wave cosmology
- The Cosmic Evolution of Binary Black Holes in Young, Globular and Nuclear Star Clusters: Rates, Masses, Spins and Mixing Fractions
- Accuracy Requirements for Empirically-Measured Selection Functions
- Search for intermediate mass black hole binaries in the third observing run of Advanced LIGO and Advanced Virgo
- When are LIGO/Virgo's Big Black-Hole Mergers?
- Bridging the Gap: Categorizing Gravitational-Wave Events at the Transition Between Neutron Stars and Black Holes
- A Program for Multi-Messenger Standard Siren Cosmology in the Era of LIGO A+, Rubin Observatory, and Beyond
- Cosmology and modified gravitational wave propagation from binary black hole population models
- A Pixelated Approach to Galaxy Catalogue Incompleteness: Improving the Dark Siren Measurement of the Hubble Constant
- Cosmology with Standard Sirens at Cosmic Noon
- Hearing gravity from the cosmos: GWTC-2 probes general relativity at cosmological scales
- Three observational differences for binary black holes detections with second and third generation gravitational-wave detectors
- On the use of Sulphur as a tracer for abundances in galaxies
- Modified gravitational wave propagation and the binary neutron star mass function
Cited by in corpus (69)
- Cosmology with the Laser Interferometer Space Antenna
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Forecasting the detection capabilities of third-generation gravitational-wave detectors using
- The Science of the Einstein Telescope
- Cover Your Basis: Comprehensive Data-Driven Characterization of the Binary Black Hole Population
- No peaks without valleys: The stable mass transfer channel for gravitational-wave sources in light of the neutron star-black hole mass gap
- The Hitchhiker's guide to the galaxy catalog approach for gravitational wave cosmology
- Resolving the Stellar-Collapse and Hierarchical-Merger origins of the Coalescing Black Holes
- Potential Subpopulations and Assembling Tendency of the Merging Black Holes
- Bimodal black-hole mass distribution and chirp masses of binary black-hole mergers
- Cross-correlating dark sirens and galaxies: constraints on from GWTC-3 of LIGO-Virgo-KAGRA
- The Lunar Gravitational-wave Antenna: Mission Studies and Science Case
- Cosmography using strongly lensed gravitational waves from binary black holes
- Cosmography with next-generation gravitational wave detectors
- Prospects of testing late-time cosmology with weak lensing of gravitational waves and galaxy surveys
- Cosmology and Astrophysics with Standard Sirens and Galaxy Catalogs in View of Future Gravitational Wave Observations
- The locations of features in the mass distribution of merging binary black holes are robust against uncertainties in the metallicity-dependent cosmic star formation history
- Systematic Biases in Estimating the Properties of Black Holes Due to Inaccurate Gravitational-Wave Models
- Gravitational wave populations and cosmology with neural posterior estimation
- PixelPop: High Resolution Nonparameteric Inference of Gravitational-Wave Populations in Multiple Dimensions
- Future prospects on testing extensions to CDM through the weak lensing of gravitational waves
- Gravitational-wave dark siren cosmology systematics from galaxy weighting
- Physical Models for the Astrophysical Population of Black Holes: Application to the Bump in the Mass Distribution of Gravitational Wave Sources
- Sampling the full hierarchical population posterior distribution in gravitational-wave astronomy
- Model-independent within FLRW: Joint constraints from GWTC-3 standard sirens and strong lensing time delays
- Standard siren cosmology in the era of the 2.5-generation ground-based gravitational wave detectors: bright and dark sirens of LIGO Voyager and NEMO
- Multi-messenger Gravitational Lensing
- GWSim: Python package for creating mock GW samples for different astrophysical populations and cosmological models of binary black holes
- Breaking bad degeneracies with Love relations: Improving gravitational-wave measurements through universal relations
- The clustering of dark sirens' invisible host galaxies
- Investigating the impact of galaxies' compact binary hosting probability for gravitational-wave cosmology
- Bayesian framework to infer the Hubble constant from the cross-correlation of individual gravitational wave events with galaxies
- A robust cosmic standard ruler from the cross-correlations of galaxies and dark sirens
- Strong-lensing cosmography using third-generation gravitational-wave detectors
- Impact of unmodeled eccentricity on the tidal deformability measurement and implications for gravitational wave physics inference
- Cosmic Cartography: Bayesian reconstruction of the galaxy density informed by large-scale structure
- Rapid identification of time-frequency domain gravitational wave signals from binary black holes using deep learning
- Multi-spectral Sirens: Gravitational-wave Cosmology with (Multi-) Sub-populations of Binary Black Holes
- Revisiting the Parameter Space of Binary Neutron Star Merger Event GW170817
- Fundamental Physics and Cosmology with TianQin
- A model-independent tripartite test of cosmic distance relations
- Constraints on peculiar velocity distribution of binary black holes using gravitational waves with GWTC-3
- Impact of gravitational waveform model systematics on the measurement of the Hubble constant
- Impact of calibration uncertainties on Hubble constant measurements from gravitational-wave sources
- Unveiling the Universe with Emerging Cosmological Probes
- Cosmic Cartography II: completing galaxy catalogs for gravitational-wave cosmology
- Inferring astrophysics and cosmology with individual compact binary coalescences and their gravitational-wave stochastic background
- A Bright Future? Prospects for Cosmological Tests of GR with Multimessenger Gravitational Wave Events
- A Hubble constant estimation with dark standard sirens and galaxy cluster catalogues
- Cosmology with Binary Neutron Stars: Does Mass-Redshift Correlation Matter?
- Constraining the modified friction in gravitational wave propagation with precessing black hole binaries
- Measuring the speed of gravity and the cosmic expansion with time delays between gravity and light from binary neutron stars
- Bright siren without electromagnetic counterpart by LISA-Taiji-TianQin network
- Echoes from the dark: Galaxy catalog incompleteness in standard siren cosmology
- Joint estimation of the cosmological model and the mass and redshift distributions of the binary black hole population with the Einstein Telescope
- Search for exotic gravitational wave signals beyond general relativity using deep learning
- Parameter estimation of eccentric massive black hole binaries with LISA and its cosmological implications
- Uncertainty and bias of cosmology and astrophysical population model from statistical dark sirens
- The Luminosity of the Darkness: Schechter function in dark sirens
- Listening Across the Cosmic Time: Standard Sirens from Ground- and Space-Based Missions in the Next Decade
- The impact of precession and higher-order multipoles for gravitational wave cosmological inference
- Massive black hole binaries in LISA: constraining cosmological parameters at high redshifts
- First measurement of the Hubble constant from a combined weak lensing and gravitational-wave standard siren analysis
- Pushing spectral siren cosmology into the third-generation era: a blinded mock data challenge
- Measurement of the Hubble constant using the Dark Energy Survey Year 6 Gold galaxy catalogue and the fourth Gravitational-Wave Transient Catalogue
- A Study of Systematics on the Cosmological Inference of the Hubble Constant from Gravitational Wave Standard Sirens
- Constraining the lensing dispersion from the angular clustering of binary black hole mergers
- Golden and Silver Dark Sirens for precise H0 measurement with HETDEX
- Gravitational-wave standard sirens and application in cosmology