A flexible parameterization to test early physics solutions to the Hubble tension with future CMB data
arXiv:2410.16185 · doi:10.1088/1475-7516/2025/01/033
Abstract
One approach to reconciling local measurements of a high expansion rate with observations of acoustic oscillations in the CMB and galaxy clustering (the "Hubble tension") is to introduce additional contributions to the CDM model that are relevant before recombination. While numerous possibilities exist, none are currently well-motivated or preferred by data. However, future CMB experiments, which will measure acoustic peaks to much smaller scales and resolve polarization signals with higher signal-to-noise over large sky areas, should detect almost any such modification at high significance. We propose a model-agnostic method to capture most relevant possible deviations from CDM due to additional non-interacting components, while remaining sufficiently constraining to enable detection across various scenarios. The phenomenological model uses a fluid model with four parameters governing additional density contributions that peak at different redshifts, and two sound speed parameters. We forecast possible constraints with Simons Observatory, explore parameter degeneracies that arise in CDM, and demonstrate that this method could detect a range of specific models. Which of the new parameters gets excited can indicate the nature of any new physics, while the generality of the model allows for testing with future data in a way that should not be plagued by a posteriori choices or publication bias. When testing our model with Planck data, we find good consistency with the CDM model, but the data also allows for large Hubble parameter, especially if the sound speed of an additional component is not too different to that of radiation.
35 pages, 12 figures
References in corpus (60)
- Cosmological parameters from CMB and other data: a Monte-Carlo approach
- The Cosmic Linear Anisotropy Solving System (CLASS) II: Approximation schemes
- In the Realm of the Hubble tension a Review of Solutions
- The Simons Observatory: Science goals and forecasts
- Planck 2018 results. V. CMB power spectra and likelihoods
- DESI 2024 VI: Cosmological Constraints from the Measurements of Baryon Acoustic Oscillations
- Early Dark Energy Can Resolve The Hubble Tension
- Relic neutrino decoupling including flavour oscillations
- Cosmological implications of baryon acoustic oscillation (BAO) measurements
- Cobaya: Code for Bayesian Analysis of hierarchical physical models
- The 10 Meter South Pole Telescope
- The Atacama Cosmology Telescope: DR4 Maps and Cosmological Parameters
- Efficient sampling of fast and slow cosmological parameters
- CMB power spectrum parameter degeneracies in the era of precision cosmology
- PolyChord: nested sampling for cosmology
- PolyChord: next-generation nested sampling
- Signatures of Relativistic Neutrinos in CMB Anisotropy and Matter Clustering
- Oscillating scalar fields and the Hubble tension: a resolution with novel signatures
- The Atacama Cosmology Telescope: DR6 Gravitational Lensing Map and Cosmological Parameters
- Advanced ACTPol Cryogenic Detector Arrays and Readout
- Early Dark Energy Does Not Restore Cosmological Concordance
- Relic neutrino decoupling with flavour oscillations revisited
- SPT-3G: A Next-Generation Cosmic Microwave Background Polarization Experiment on the South Pole Telescope
- Towards a precision calculation of in the Standard Model II: Neutrino decoupling in the presence of flavour oscillations and finite-temperature QED
- Cosmological implications of ultra-light axion-like fields
- How Massless Neutrinos Affect the Cosmic Microwave Background Damping Tail
- Neutrino decoupling including flavour oscillations and primordial nucleosynthesis
- A precision calculation of relic neutrino decoupling
- The Atacama Cosmology Telescope: A Measurement of the DR6 CMB Lensing Power Spectrum and its Implications for Structure Growth
- The Atacama Cosmology Telescope: A Measurement of the Cosmic Microwave Background Power Spectra at 98 and 150 GHz
- The South Pole Telescope
- Large Scale Cosmic Microwave Background Anisotropies and Dark Energy
- ETHOS - An Effective Theory of Structure Formation: From dark particle physics to the matter distribution of the Universe
- The Atacama Cosmology Telescope: The polarization-sensitive ACTPol instrument
- Resolving the Hubble Tension with New Early Dark Energy
- First Cosmological Results using Type Ia Supernovae from the Dark Energy Survey: Measurement of the Hubble Constant
- CMB power spectra and cosmological parameters from Planck PR4 with CamSpec
- New Early Dark Energy
- Consistency tests of CDM from the early integrated Sachs-Wolfe effect: Implications for early-time new physics and the Hubble tension
- Optical Design of the Atacama Cosmology Telescope and the Millimeter Bolometric Array Camera
- Phases of New Physics in the CMB
- A First Detection of the Acoustic Oscillation Phase Shift Expected from the Cosmic Neutrino Background
- Xspect, estimation of the angular power spectrum by computing cross-power spectra with analytical error bars
- Evidence for dark matter interactions in cosmological precision data?
- New constraint on Early Dark Energy from Planck and BOSS data using the profile likelihood
- Small Magellanic Cloud Cepheids Observed with the Hubble Space Telescope Provide a New Anchor for the SH0ES Distance Ladder
- A Measurement of Gravitational Lensing of the Cosmic Microwave Background Using SPT-3G 2018 Data
- Free-streaming and Coupled Dark Radiation Isocurvature Perturbations: Constraints and Application to the Hubble Tension
- Self-interacting Dark Radiation
- Observational constraints on early dark energy
- Confronting interacting dark radiation scenarios with cosmological data
- BAO from angular clustering: optimization and mitigation of theoretical systematics
- A grounded perspective on New Early Dark Energy using ACT, SPT, and BICEP/Keck
- New Constraints on the Early Expansion History
- Model Independent Early Expansion History and Dark Energy
- Status Report on the Chicago-Carnegie Hubble Program (CCHP): Measurement of the Hubble Constant Using the Hubble and James Webb Space Telescopes
- Bayesian evidence estimation from posterior samples with normalizing flows
- Normalizing Constant Estimation with Gaussianized Bridge Sampling
- Reduced Hubble Tension in Dark Radiation Models after DESI 2024
- Procoli: Profiles of cosmological likelihoods