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Paper Citation Record · LEDGER

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference

As of 16 August 2026, this Paper Citation Record lists 54 of 54 outbound references and 0 inbound Pith citation observations for arXiv:2608.04005.

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2608.04005 v1

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Outbound references

Observation df6d835e-0aee-4902-8a36-6c7c93aa0827 · outbound

This paper cites A Comprehensive Measurement of the Local Value of the Hubble Constant with 1 km/s/Mpc Uncertainty from the Hubble Space Telescope and the SH0ES Team.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference A Comprehensive Measurement of the Local Value of the Hubble Constant with 1 km/s/Mpc Uncertainty from the Hubble Space Telescope and the SH0ES Team

Reference 38

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Observation ec4f1dfd-2ca4-41d5-be93-4aa2235b30e1 · outbound

This paper cites Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A

Reference 40

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Observation f16c32f5-3263-4860-96d7-ebfd56d959cf · outbound

This paper cites Dark Energy after GW170817: dead ends and the road ahead.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Dark Energy after GW170817: dead ends and the road ahead

Reference 42

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Observation e0e625ff-d139-4bd5-9c34-9f71eef4cce8 · outbound

This paper cites Dark Energy after GW170817 and GRB170817A.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Dark Energy after GW170817 and GRB170817A

Reference 43

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Observation b8178f58-206f-4b70-a92a-b9c277803e4d · outbound

This paper cites Hubble without the Hubble: cosmology using advanced gravitational-wave detectors alone.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Hubble without the Hubble: cosmology using advanced gravitational-wave detectors alone

Reference 44

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Observation 92df5f37-6e28-40d7-9c32-0b68cb98b9b7 · outbound

This paper cites A Future Percent-Level Measurement of the Hubble Expansion at Redshift 0.8 With Advanced LIGO.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference A Future Percent-Level Measurement of the Hubble Expansion at Redshift 0.8 With Advanced LIGO

Reference 45

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Observation 1a3ba2c6-f110-42ab-9a1b-58e32ec2283d · outbound

This paper cites Cosmology in the dark: On the importance of source population models for gravitational-wave cosmology.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Cosmology in the dark: On the importance of source population models for gravitational-wave cosmology

Reference 46

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Observation b07d039c-cbc1-461b-8d41-248aa4ee9599 · outbound

This paper cites Gravitational wave cosmology : an introduction.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Gravitational wave cosmology : an introduction

Reference 47

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Observation 375cd7da-560c-4873-b6fd-38ab69569125 · outbound

This paper cites Radio sirens: inferring $H_0$ with binary black holes and neutral hydrogen in the era of the Einstein Telescope and the SKA Observatory.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Radio sirens: inferring $H_0$ with binary black holes and neutral hydrogen in the era of the Einstein Telescope and the SKA Observatory

Reference 48

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Observation 5dc371ec-43a7-48c9-9f50-4379fe14bdca · outbound

This paper cites Cosmological inference using only gravitational wave observations of binary neutron stars.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Cosmological inference using only gravitational wave observations of binary neutron stars

Reference 49

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Observation 41a94f4f-1c6b-4f37-9ad7-111dfc9fd665 · outbound

This paper cites Extracting distribution parameters from multiple uncertain observations with selection biases.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Extracting distribution parameters from multiple uncertain observations with selection biases

Reference 50

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Observation a3586a4b-91fd-40f1-b1c1-32f0b9051a44 · outbound

This paper cites Inferring the properties of a population of compact binaries in presence of selection effects.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Inferring the properties of a population of compact binaries in presence of selection effects

Reference 51

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Observation 681ac8a3-9b83-459d-8649-681245e8373f · outbound

This paper cites Growing Pains: Understanding the Impact of Likelihood Uncertainty on Hierarchical Bayesian Inference for Gravitational-Wave Astronomy.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Growing Pains: Understanding the Impact of Likelihood Uncertainty on Hierarchical Bayesian Inference for Gravitational-Wave Astronomy

Reference 52

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Observation 1a3a927f-7117-4e55-be2b-3c1563202ded · outbound

This paper cites The Hitchhiker's guide to the galaxy catalog approach for gravitational wave cosmology.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference The Hitchhiker's guide to the galaxy catalog approach for gravitational wave cosmology

Reference 53

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Observation f3533415-023b-46bd-8c29-7b7f03860291 · outbound

This paper cites Pushing spectral siren cosmology into the third-generation era: a blinded mock data challenge.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Pushing spectral siren cosmology into the third-generation era: a blinded mock data challenge

Reference 54

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Observation 8b7ca3ee-0c9d-4178-a32d-6070cee956cb · outbound

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference The frontier of simulation-based inference

Reference 55

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Observation ce40e87e-4872-427f-9a35-49b46ed83413 · outbound

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference KiDS-SBI: Simulation-based inference analysis of KiDS-1000 cosmic shear

Reference 58

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This paper cites Cosmology from HSC Y1 Weak Lensing with Combined Higher-Order Statistics and Simulation-based Inference.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Cosmology from HSC Y1 Weak Lensing with Combined Higher-Order Statistics and Simulation-based Inference

Reference 59

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Observation 9bbca6a2-fd3e-4e8d-818a-f38b3b6f1794 · outbound

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference How much information can be extracted from galaxy clustering at the field level?

Reference 61

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Extracting cosmological information from the abundance of galaxy clusters with simulation-based inference

Reference 62

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Fast likelihood-free inference in the LSS Stage IV era

Reference 63

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Fast Sampling of Cosmological Initial Conditions with Gaussian Neural Posterior Estimation

Reference 64

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Observation 1f686fb8-ee8d-40f7-b561-28fb045cc733 · outbound

This paper cites Gravitational wave populations and cosmology with neural posterior estimation.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Gravitational wave populations and cosmology with neural posterior estimation

Reference 65

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Observation dad67d9b-1d6b-4394-b7dc-4466c67e9710 · outbound

This paper cites End-to-End Population Inference from Gravitational-Wave Strain using Transformers.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference End-to-End Population Inference from Gravitational-Wave Strain using Transformers

Reference 66

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Modelling the host galaxies of binary compact object mergers with observational scaling relations

Reference 67

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Approximating Likelihood Ratios with Calibrated Discriminative Classifiers

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Truncated Marginal Neural Ratio Estimation

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Papamakarios and I

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Solving high-dimensional parameter inference: marginal posterior densities & Moment Networks

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Massive optimal data compression and density estimation for scalable, likelihood-free inference in cosmology

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Fast likelihood-free cosmology with neural density estimators and active learning

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Ajith et al.,The Lunar Gravitational-wave Antenna: mission studies and science case, JCAP01(2025) 108 [2404.09181]

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference A Horizon Study for Cosmic Explorer: Science, Observatories, and Community

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Science with the Einstein Telescope: a comparison of different designs

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Dancing in the dark: detecting a population of distant primordial black holes

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Forecast cosmological constraints from the number counts of Gravitational Waves events

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Observation f2c92950-99c7-4a54-9b98-46ae669e4801 · outbound

This paper cites Abundance of damped Lyman-alpha absorbers in cosmological SPH simulations.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Abundance of damped Lyman-alpha absorbers in cosmological SPH simulations

Reference 83

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Observation fc209c9f-0171-4003-a0ec-97210ab62285 · outbound

This paper cites Estimating cosmological parameters by the simulated data of gravitational waves from the Einstein Telescope.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Estimating cosmological parameters by the simulated data of gravitational waves from the Einstein Telescope

Reference 84

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Observation 9b6591ec-de19-483a-a672-7d4fe2742bfb · outbound

This paper cites Efficient Computation of CMB anisotropies in closed FRW models.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Efficient Computation of CMB anisotropies in closed FRW models

Reference 85

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Observation 739e319b-a1df-4074-8d4d-40238a4ea10b · outbound

This paper cites CMB power spectrum parameter degeneracies in the era of precision cosmology.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference CMB power spectrum parameter degeneracies in the era of precision cosmology

Reference 86

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Observation 27448991-f1f1-408b-993b-08fa58564418 · outbound

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Unresolved cited work

Reference 87

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Observation 0d641a76-496e-4f9c-9a2e-7938cf253841 · outbound

This paper cites Frequency-domain gravitational waves from non-precessing black-hole binaries. I. New numerical waveforms and anatomy of the signal.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Frequency-domain gravitational waves from non-precessing black-hole binaries. I. New numerical waveforms and anatomy of the signal

Reference 88

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Observation be1e684b-b75a-4d92-8e0b-6fd578fcdcae · outbound

This paper cites Frequency-domain gravitational waves from non-precessing black-hole binaries. II. A phenomenological model for the advanced detector era.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Frequency-domain gravitational waves from non-precessing black-hole binaries. II. A phenomenological model for the advanced detector era

Reference 89

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Observation c2c808ba-39e7-4083-ab66-bb6c708ea593 · outbound

This paper cites Zheng, M.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Zheng, M

Reference 90

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Observation c18a5e72-637c-4fe0-af3d-9e52ad933288 · outbound

This paper cites Benchmarking Simulation-Based Inference.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Benchmarking Simulation-Based Inference

Reference 91

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Observation 3acf2b60-56fe-43f5-9bf2-27b3b8e39232 · outbound

This paper cites Fast and Credible Likelihood-Free Cosmology with Truncated Marginal Neural Ratio Estimation.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Fast and Credible Likelihood-Free Cosmology with Truncated Marginal Neural Ratio Estimation

Reference 92

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Observation ace08861-cf5b-4b88-9bc5-13d51bded20f · outbound

This paper cites Estimating the warm dark matter mass from strong lensing images with truncated marginal neural ratio estimation.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Estimating the warm dark matter mass from strong lensing images with truncated marginal neural ratio estimation

Reference 93

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Observation 6c79eb76-8d5d-4ff7-aca6-048b8a19edee · outbound

This paper cites Constraining the X-ray heating and reionization using 21-cm power spectra with Marginal Neural Ratio Estimation.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Constraining the X-ray heating and reionization using 21-cm power spectra with Marginal Neural Ratio Estimation

Reference 94

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Observation c7c8d0f8-e2a9-40aa-8fc9-8f5510999d74 · outbound

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Albatross: A scalable simulation-based inference pipeline for analysing stellar streams in the Milky Way

Reference 95

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Observation 3a8c5572-6662-4777-8dd1-bf1d7c3bb6b7 · outbound

This paper cites Peregrine: Sequential simulation-based inference for gravitational wave signals.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Peregrine: Sequential simulation-based inference for gravitational wave signals

Reference 96

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Observation ec1edcab-b24b-4614-877d-f555990234d1 · outbound

This paper cites Franco Abell´ an, N.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Franco Abell´ an, N

Reference 97

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Observation 0b994264-ebcf-4414-ad1e-a74e9ca323fd · outbound

This paper cites Optuna: A Next-generation Hyperparameter Optimization Framework.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Optuna: A Next-generation Hyperparameter Optimization Framework

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Observation 3470bd65-326f-495b-9e35-9a5db1e6bccf · outbound

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Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference A Trust Crisis In Simulation-Based Inference? Your Posterior Approximations Can Be Unfaithful

Reference 100

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Observation c7347c92-f475-4a1b-bec3-a387b9241077 · outbound

This paper cites Bradbury, R.

Cosmology in the Einstein Telescope era: comparing traditional and simulation-based methods for population inference Bradbury, R

Reference 101

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