Simulation-Based Inference of Reionization Parameters From 3D Tomographic 21 cm Lightcone Images
arXiv:2105.03344 · doi:10.3847/1538-4357/ac457d
Abstract
Tomographic three-dimensional 21 cm images from the epoch of reionization contain a wealth of information about the reionization of the intergalactic medium by astrophysical sources. Conventional power spectrum analysis cannot exploit the full information in the 21 cm data because the 21 cm signal is highly non-Gaussian due to reionization patchiness. We perform a Bayesian inference of the reionization parameters where the likelihood is implicitly defined through forward simulations using density estimation likelihood-free inference (DELFI). We adopt a trained 3D Convolutional Neural Network (CNN) to compress the 3D image data into informative summaries (DELFI-3D CNN). We show that this method recovers accurate posterior distributions for the reionization parameters. Our approach outperforms earlier analysis based on two-dimensional 21 cm images. In contrast, an MCMC analysis of the 3D lightcone-based 21 cm power spectrum alone and using a standard explicit likelihood approximation results in less accurate credible parameter regions than inferred by the DELFI-3D CNN, both in terms of the location and shape of the contours. Our proof-of-concept study implies that the DELFI-3D CNN can effectively exploit more information in the 3D 21 cm images than a 2D CNN or power spectrum analysis. This technique can be readily extended to include realistic effects and is therefore a promising approach for the scientific interpretation of future 21 cm observation data.
23 pages, 19 figures, 4 tables. Accepted for publication in ApJ. Comments welcome
References in corpus (27)
- Array Programming with NumPy
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Cosmic Reionization and Early Star-Forming Galaxies: A Joint Analysis of New Constraints from Planck and Hubble Space Telescope
- Model-independent evidence in favor of an end to reionization by z~6
- Efficient Simulations of Early Structure Formation and Reionization
- Evidence of patchy hydrogen reionization from an extreme Ly trough below redshift six
- Conditions for Reionizing the Universe with A Low Galaxy Ionizing Photon Escape Fraction
- Improved upper limits on the 21-cm signal power spectrum of neutral hydrogen at from LOFAR
- 21CMMC: an MCMC analysis tool enabling astrophysical parameter studies of the cosmic 21 cm signal
- Deep multi-redshift limits on Epoch of Reionisation 21cm Power Spectra from Four Seasons of Murchison Widefield Array Observations
- Fast likelihood-free cosmology with neural density estimators and active learning
- Constraining the thick disc formation scenario of the Milky Way
- Uncertainties in Parameters Estimated with Neural Networks: Application to Strong Gravitational Lensing
- Nuisance hardened data compression for fast likelihood-free inference
- Emulation of reionization simulations for Bayesian inference of astrophysics parameters using neural networks
- Detection and extraction of signals from the epoch of reionization using higher order one-point statistics
- The morphology of cosmological reionization by means of Minkowski Functionals
- Sensitivity for 21cm Bispectrum from Epoch of Reionization
- Studying 21cm power spectrum with one-point statistics
- Separating the EoR Signal with a Convolutional Denoising Autoencoder: A Deep-learning-based Method
- Epoch of reionization parameter estimation with the 21-cm bispectrum
- Redshifted 21-cm bispectrum II: Impact of the spin temperature fluctuations and redshift space distortions on the signal from the Cosmic Dawn
- The 21 cm-kSZ-kSZ Bispectrum during the Epoch of Reionization
- A unified framework for 21cm tomography sample generation and parameter inference with Progressively Growing GANs
- Constraining the Reionization History using Bayesian Normalizing Flows
- Analysing the Epoch of Reionization with three-point correlation functions and machine learning techniques
- Using the sample variance of 21cm maps as a tracer of the ionisation topology
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- Fast and Credible Likelihood-Free Cosmology with Truncated Marginal Neural Ratio Estimation
- Implicit Likelihood Inference of Reionization Parameters from the 21 cm Power Spectrum
- Exploring the likelihood of the 21-cm power spectrum with simulation-based inference
- Exploring the cosmic 21-cm signal from the Epoch of Reionisation using the Wavelet Scattering Transform
- 21cmEMU: an emulator of 21cmFAST summary observables
- Constraining the X-ray heating and reionization using 21-cm power spectra with Marginal Neural Ratio Estimation
- HIFlow: Generating Diverse HI Maps and Inferring Cosmology while Marginalizing over Astrophysics using Normalizing Flows
- Efficient parameter inference for gravitational wave signals in the presence of transient noises using temporal and time-spectral fusion normalizing flow
- Extracting the 21-cm Power Spectrum and the reionization parameters from mock datasets using Artificial Neural Networks
- Likelihood-free Inference with Mixture Density Network
- Calibrating cosmological simulations with implicit likelihood inference using galaxy growth observables
- How informative are summaries of the cosmic 21-cm signal?
- CoLFI: Cosmological Likelihood-free Inference with Neural Density Estimators
- Exploring the cosmic dawn and epoch of reionization with 21cm line
- Detecting the non-Gaussianity of the 21-cm signal during reionisation with the Wavelet Scattering Transform
- Accurate modelling of the Lyman- coupling for the 21-cm signal, observability with NenuFAR and SKA
- DIGS: Deep Inference of Galaxy Spectra with Neural Posterior Estimation
- Optimal, fast, and robust inference of reionization-era cosmology with the 21cmPIE-INN
- Bayesian evidence-driven likelihood selection for sky-averaged 21-cm signal extraction
- Fast likelihood-free inference in the LSS Stage IV era
- Understanding the Impact of Semi-numeric Reionization Models when using CNNs
- Generalised likelihood profiles for models with intractable likelihoods
- Deep learning-driven likelihood-free parameter inference for 21-cm forest observations
- Analyzing the 21cm forest with Wavelet Scattering Transform: Insight into non-Gaussian features of the 21cm forest
- Predictive uncertainty on improved astrophysics recovery from multifield cosmology
- Comparing sampling techniques to chart parameter space of 21 cm Global signal with Artificial Neural Networks
- Comparison of Bayesian inference methods using the Loreli II database of hydro-radiative simulations of the 21-cm signal
- Synthetic Observations with the Square Kilometre Array (SKA) -- development towards an end-to-end pipeline
- Reionization Parameter Inference from 3D Minkowski Functionals of the 21 cm Signals
- The 21cm-galaxy cross-correlation: Realistic forecast for 21cm signal detection and reionisation constraints
- Map Reconstruction of radio observations with Conditional Invertible Neural Networks
- From ANN to BNN: Inferring Reionization Parameters using Uncertainty-aware Emulators of 21-cm Summaries
- 3D ScatterNet: Inference from 21 cm Light-cones
- Observable Optimization for Precision Theory: Machine Learning Energy Correlators
- CosmoUiT: A Vision Transformer-UNet Hybrid for Fast and Accurate Emulation of 21-cm Maps from the Epoch of Reionization
- Accelerating reionization constraints: An ANN-emulator framework for the SCRIPT Semi-numerical Model
- Large Language Models -- the Future of Fundamental Physics?
- Beyond the Power Spectrum: A New Framework for Non-Stationary Fields with Applications to Light-Cone Effects in Line Intensity Mapping
- Sample Variance Denoising in Cylindrical 21-cm Power Spectra
- Power spectrum multipoles and clustering wedges during the Epoch of Reionization
- A bubble size distribution model for the Epoch of Reionization
- Nonlinear reconstruction of 21cm global signal from 21cm power spectrum with artificial neural networks
- Quantifying and mitigating the effect of snapshot interval in light-cone Epoch of Reionization 21-cm simulations
- Simulation based inference of the ionization history from the 2D 21 cm power spectrum