Detectability and Parameter Estimation for Einstein Telescope Configurations with GWJulia
arXiv:2506.21530 · doi:10.1088/1475-7516/2026/05/079
Abstract
Future gravitational-wave (GW) detectors are expected to detect tens of thousands of compact binary coalescences (CBC) per year, depending also on the final detectors layout. For this reason, it is essential to have a fast, reliable tool for forecasting how different detector layouts will affect parameter estimation for these events. The Fisher Information Matrix (FIM) is a common tool for tackling this problem. In this paper, we present a new open source code GWJulia to perform FIM analysis of CBC parameters, i.e., stellar black-hole binaries (BBH), neutron star binaries (BNS), and neutron star-black hole binaries (NSBH). The code is purely written in Julia, making it fast while maintaining a high level of accuracy. We consider a set of case studies to compare different Einstein Telescope (ET) designs. We compare a 10km triangular configuration with two 15km L-shaped detectors with different orientations and temperatures. We discuss also the accuracy of combinations of parameters, which is very informative for cosmology or population studies. Finally, we focus on the detection of golden events and explore how the FIM can guide posterior sampling of GW signals using a novel Hamiltonian Monte Carlo (HMC) sampler. The code is publicly available at https://github.com/andrea-begnoni/GW.jl
24 pages + appendix. Matching publication version
References in corpus (77)
- Observation of Gravitational Waves from a Binary Black Hole Merger
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Cosmic Star Formation History
- Multi-messenger Observations of a Binary Neutron Star Merger
- GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
- Masses, Radii, and Equation of State of Neutron Stars
- Tidal Love numbers of neutron stars
- Science Case for the Einstein Telescope
- Frequency-domain gravitational waves from non-precessing black-hole binaries. II. A phenomenological model for the advanced detector era
- Constraints on a phenomenologically parameterized neutron-star equation of state
- Frequency-domain gravitational waves from non-precessing black-hole binaries. I. New numerical waveforms and anatomy of the signal
- Comparison of post-Newtonian templates for compact binary inspiral signals in gravitational-wave detectors
- Use and Abuse of the Fisher Information Matrix in the Assessment of Gravitational-Wave Parameter-Estimation Prospects
- Computationally efficient models for the dominant and sub-dominant harmonic modes of precessing binary black holes
- Matching post-Newtonian and numerical relativity waveforms: systematic errors and a new phenomenological model for non-precessing black hole binaries
- Estimating spinning binary parameters and testing alternative theories of gravity with LISA
- Science with the Einstein Telescope: a comparison of different designs
- Cosmology with the Laser Interferometer Space Antenna
- The progenitors of compact-object binaries: impact of metallicity, common envelope and natal kicks
- IMRPhenomXHM: A multi-mode frequency-domain model for the gravitational wave signal from non-precessing black-hole binaries
- Setting the cornerstone for the IMRPhenomX family of models for gravitational waves from compact binaries: The dominant harmonic for non-precessing quasi-circular black holes
- Inference of the cosmological parameters from gravitational waves: application to second generation interferometers
- Systematic and statistical errors in a bayesian approach to the estimation of the neutron-star equation of state using advanced gravitational wave detectors
- Improving the NRTidal model for binary neutron star systems
- First higher-multipole model of gravitational waves from spinning and coalescing black-hole binaries
- Constraints on the cosmic expansion history from GWTC-3
- The Masses and Spins of Neutron Stars and Stellar-Mass Black Holes
- A Future Percent-Level Measurement of the Hubble Expansion at Redshift 0.8 With Advanced LIGO
- Observation of Gravitational Waves from the Coalescence of a Compact Object and a Neutron Star
- The cosmic merger rate of stellar black hole binaries from the Illustris simulation
- Degeneracy between mass and spin in black-hole-binary waveforms
- A data-analysis driven comparison of analytic and numerical coalescing binary waveforms: nonspinning case
- A Mock Data Challenge for the Einstein Gravitational-Wave Telescope
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- On the minimum mass of neutron stars
- Gravitational-wave phasing for low-eccentricity inspiralling compact binaries to 3PN order
- Reducing the weak lensing noise for the gravitational wave Hubble diagram using the non-Gaussianity of the magnification distribution
- Forecasting the detection capabilities of third-generation gravitational-wave detectors using
- Tests of General Relativity with GWTC-3
- Localization accuracy of compact binary coalescences detected by the third-generation gravitational-wave detectors and implication for cosmology
- Cosmology in the dark: On the importance of source population models for gravitational-wave cosmology
- Modeling the gravitational wave signature of neutron star black hole coalescences: PhenomNSBH
- Inadequacies of the Fisher Information Matrix in gravitational-wave parameter estimation
- Tidal Deformabilities and Neutron Star Mergers
- Binary Neutron Star Mergers and Third Generation Detectors: Localization and Early Warning
- The Science of the Einstein Telescope
- Cosmology and dark energy from joint gravitational wave-GRB observations
- Gwbench: a novel Fisher information package for gravitational-wave benchmarking
- Frequency-Dependent Responses in 3rd Generation Gravitational-Wave Detectors
- Bilby-MCMC: An MCMC sampler for gravitational-wave inference
- : a Fisher information matrix Python code for third-generation gravitational-wave detectors
- GWFish: A simulation software to evaluate parameter-estimation capabilities of gravitational-wave detector networks
- Parameter Estimation with a spinning multi-mode waveform model: IMRPhenomHM
- Listening to the Universe with Next Generation Ground-Based Gravitational-Wave Detectors
- CLASS_GWB: robust modeling of the astrophysical gravitational wave background anisotropies
- Aligned spin neutron star-black hole mergers: a gravitational waveform amplitude model
- New and Robust Gravitational-Waveform Model for High-Mass-Ratio Binary Neutron Star Systems with Dynamical Tidal Effects
- MCMC Exploration of Supermassive Black Hole Binary Inspirals
- Ranking Love numbers for the neutron star equation of state: The need for third-generation detectors
- Kilonova Emission From Black Hole-Neutron Star Mergers. II. Luminosity Function and Implications for Target-of-opportunity Observations of Gravitational-wave Triggers and Blind Searches
- The time delay distribution and formation metallicity of LIGO-Virgo's binary black holes
- Cosmological perturbation effects on gravitational-wave luminosity distance estimates
- Comparison of high-accuracy numerical simulations of black-hole binaries with stationary phase post-Newtonian template waveforms for Initial and Advanced LIGO
- Detection and Parameter Estimation of Gravitational Waves from Compact Binary Inspirals with Analytical Double-Precessing Templates
- Exploring the sky localization and early warning capabilities of third generation gravitational wave detectors in three-detector network configurations
- Detectability and parameter estimation of stellar origin black hole binaries with next generation gravitational wave detectors
- Cosmology and Astrophysics with Standard Sirens and Galaxy Catalogs in View of Future Gravitational Wave Observations
- Constraining accretion efficiency in massive binary stars with LIGO-Virgo black holes
- Inferring, not just detecting: metrics for high-redshift sources observed with third-generation gravitational-wave detectors
- LIGO-Virgo-KAGRA's Oldest Black Holes: Probing star formation at cosmic noon with GWTC-3
- Localization of binary neutron star mergers with a single Cosmic Explorer
- GWDALI: A Fisher-matrix based software for gravitational wave parameter-estimation beyond Gaussian approximation
- Validating Prior-informed Fisher-matrix Analyses against GWTC Data
- Likelihood for a Network of Gravitational-Wave Detectors with Correlated Noise
- Next-generation global gravitational-wave detector network: Impact of detector orientation on compact binary coalescence and stochastic gravitational-wave background searches
- The impact of local noise recorded at the ET candidate sites on the signal to noise ratio of CBC gravitational wave signals for the ET triangle configuration
- Enhancing gravitational-wave host localization with SKYFAST: rapid volume and inclination angle reconstruction