Comparing next-generation detector configurations for high-redshift gravitational wave sources with neural posterior estimation
arXiv:2512.20699 · doi:10.1051/0004-6361/202558828
Abstract
The coming decade will be crucial for determining the final design and configuration of a global network of next-generation (XG) gravitational-wave detectors, including the Einstein Telescope (ET) and Cosmic Explorer (CE). In this study, and for the first time, we assessed the performance of various network configurations using neural posterior estimation (NPE) implemented in Dingo-IS-a method based on normalizing flows and importance sampling that enables fast and accurate inference. We focused on a specific science case involving short-duration, massive and high-redshift binary black hole mergers with detector-frame chirp masses . These systems encompass early-Universe stellar and primordial black holes, as well as intermediate-mass black hole binaries, for which XG observatories are expected to deliver major discoveries. Validation against standard Bayesian inference demonstrates that NPE robustly reproduces complex and disconnected posterior structures across all network configurations. For a network of two misaligned L-shaped ET detectors (2L MisA), the posterior distributions on luminosity distance can become multimodal and degenerate with the sky position, leading to less precise distance estimates compared to the triangular ET configuration. However, the number of sky-location multimodalities is substantially lower than the eight expected with the triangular ET, resulting in improved sky and volume localization. Adding CE to the network further reduces sky-position degeneracies, and the better performance of the 2L MisA configuration over the triangle remains evident.
18 pages, 13 figures, 5 tables. Published in A&A
References in corpus (81)
- HEALPix -- a Framework for High Resolution Discretization, and Fast Analysis of Data Distributed on the Sphere
- Normalizing Flows: An Introduction and Review of Current Methods
- Science Case for the Einstein Telescope
- Bilby: A user-friendly Bayesian inference library for gravitational-wave astronomy
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- Inspiral-merger-ringdown waveforms for black-hole binaries with non-precessing spins
- Computationally efficient models for the dominant and sub-dominant harmonic modes of precessing binary black holes
- Bayesian inference for compact binary coalescences with BILBY: Validation and application to the first LIGO--Virgo gravitational-wave transient catalogue
- An introduction to Bayesian inference in gravitational-wave astronomy: parameter estimation, model selection, and hierarchical models
- A 2 per cent Hubble constant measurement from standard sirens within 5 years
- Surrogate models for precessing binary black hole simulations with unequal masses
- Science with the Einstein Telescope: a comparison of different designs
- Rapid Bayesian position reconstruction for gravitational-wave transients
- Are merging black holes born from stellar collapse or previous mergers?
- Toward faithful templates for non-spinning binary black holes using the effective-one-body approach
- Inference of the cosmological parameters from gravitational waves: application to second generation interferometers
- Massive black hole binaries from runaway collisions: the impact of metallicity
- Real-time gravitational-wave science with neural posterior estimation
- Hierarchical mergers of stellar-mass black holes and their gravitational-wave signatures
- IndIGO and LIGO-India: Scope and Plans for Gravitational Wave Research and Precision Metrology in India
- MOCCA Code for Star Cluster Simulations - IV. A new Scenario for Intermediate Mass Black Hole Formation in Globular Clusters
- Black hole growth through hierarchical black hole mergers in dense star clusters: implications for gravitational wave detections
- Massively parallel Bayesian inference for transient gravitational-wave astronomy
- Fast and accurate prediction of numerical relativity waveforms from binary black hole coalescences using surrogate models
- Going the Distance: Mapping Host Galaxies of LIGO and Virgo Sources in Three Dimensions Using Local Cosmography and Targeted Follow-up
- Primordial Black Holes Confront LIGO/Virgo data: Current situation
- Triangulation of gravitational wave sources with a network of detectors
- Gravitational-wave parameter estimation with autoregressive neural network flows
- Gravitational Waves from the Remnants of the First Stars
- The MBTA Pipeline for Detecting Compact Binary Coalescences in the Third LIGO-Virgo Observing Run
- Exploring the Bayesian parameter estimation of binary black holes with LISA
- Nested Sampling with Normalising Flows for Gravitational-Wave Inference
- Solving puzzles of GW150914 by primordial black holes
- From inflation to black hole mergers and back again: Gravitational-wave data-driven constraints on inflationary scenarios with a first-principle model of primordial black holes across the QCD epoch
- Gravitational-Wave Astronomy with Inspiral Signals of Spinning Compact-Object Binaries
- Accelerated gravitational-wave parameter estimation with reduced order modeling
- Metrics for next-generation gravitational-wave detectors
- On the likelihood of detecting gravitational waves from Population III compact object binaries
- GW231123: a Binary Black Hole Merger with Total Mass 190-265
- Neural Importance Sampling for Rapid and Reliable Gravitational-Wave Inference
- Gravitational-wave detection rates for compact binaries formed in isolation: LIGO/Virgo O3 and beyond
- GW250114: testing Hawking's area law and the Kerr nature of black holes
- Parameter estimation with gravitational waves
- Higher order gravitational-wave modes with likelihood reweighting
- PhenomXO4a: a phenomenological gravitational-wave model for precessing black-hole binaries with higher multipoles and asymmetries
- Constraining the Inclination of Binary Mergers from Gravitational-wave Observations
- The Hitchhiker's guide to the galaxy catalog approach for gravitational wave cosmology
- Accelerating gravitational wave parameter estimation with multi-band template interpolation
- Accelerating parameter estimation of gravitational waves from compact binary coalescence using adaptive frequency resolutions
- Gravitational waves from Population III binary black holes formed by dynamical capture
- Supplement: Going the Distance: Mapping Host Galaxies of LIGO and Virgo Sources in Three Dimensions Using Local Cosmography and Targeted Follow-up
- Chirp Mass and Spin of Binary Black Holes from First Star Remnants
- Mode-by-mode Relative Binning: Fast Likelihood Estimation for Gravitational Waveforms with Spin-Orbit Precession and Multiple Harmonics
- Merging stellar and intermediate-mass black holes in dense clusters: implications for LIGO, LISA and the next generation of gravitational wave detectors
- Bayesian inference for gravitational waves from binary neutron star mergers in third-generation observatories
- Parameter estimation for signals from compact binary inspirals injected into LIGO data
- Binary black hole mergers from Population III stars: uncertainties from star formation and binary star properties
- Normalizing flows as an avenue to study overlapping gravitational wave signals
- Gravitational Wave mergers as tracers of Large Scale Structures
- Gravitational wave of intermediate-mass black holes in Population III star clusters
- Measuring binary black hole orbital-plane spin orientations
- Searching for Primordial Black Holes with the Einstein Telescope: impact of design and systematics
- The growth of intermediate mass black holes through tidal captures and tidal disruption events
- Cosmology and Astrophysics with Standard Sirens and Galaxy Catalogs in View of Future Gravitational Wave Observations
- Combining effective-one-body accuracy and reduced-order-quadrature speed for binary neutron star merger parameter estimation with machine learning
- The MBTA Pipeline for Detecting Compact Binary Coalescences in the Fourth LIGO-Virgo-KAGRA Observing Run
- Rapid localization of gravitational wave sources from compact binary coalescences using deep learning
- Efficient Reduced Order Quadrature Construction Algorithms for Fast Gravitational Wave Inference
- Constraining extended cosmologies with GWLSS cross-correlations
- Can Population III stars be major origins of both merging binary black holes and extremely metal poor stars?
- Binary black hole mergers from Population III star clusters
- Classifying binary black holes from Population III stars with the Einstein Telescope: A machine-learning approach
- Deep learning to detect gravitational waves from binary close encounters: Fast parameter estimation using normalizing flows
- Luminosity distance uncertainties from gravitational wave detections by third generation observatories
- Constraining parameters of coalescing stellar mass binary black hole systems with the Einstein Telescope alone
- Identification and characterization of distorted gravitational waves by lensing using deep learning
- Taming systematics in distance and inclination measurements with gravitational waves: role of the detector network and higher-order modes
- Simulation-based population inference of LISA's Galactic binaries: Bypassing the global fit
- Fast and accurate parameter estimation of high-redshift sources with the Einstein Telescope
- Null Stream Based Third-generation-ready Glitch Mitigation for Gravitational Wave Measurements
- Constraining parameters of low mass merging compact binary systems with Einstein Telescope alone