Dispuable: the high cost of a low optical depth
arXiv:2504.16932 · doi:10.1103/6r54-8lv4
Abstract
Recent baryonic acoustic oscillation (BAO) measurements from the Dark Energy Spectroscopic Instrument (DESI) are mildly discrepant () with the cosmic microwave background (CMB) when interpreted within CDM. When analyzing these data with extended cosmologies this inconsistency manifests as a preference for sub-minimal neutrino mass or evolving dark energy. It is known that the preference for sub-minimal neutrino mass from the suppression of structure growth could be alleviated by increasing the optical depth to reionization . We show that, because the CMB-inferred is negatively correlated with the matter fraction, a larger optical depth resolves a similar preference from geometric constraints. Optical depths large enough to resolve the neutrino mass tension ( reduce the preference for evolving dark energy from to and increase the CMB-inferred values of and to and km/s/Mpc, respectively. Conversely, within CDM the combination of DESI BAO, high- CMB and CMB lensing yields , which is in tension with Planck low- polarization data when taken at face value. Essentially all current CMB analyses including recent results from WMAP+ACT and SPT adopt the Planck measurement of : thus a systematic in large-scale Planck polarization would serve as a "single-point failure" for most modern cosmological analyses that include CMB data. While there is no evidence for systematics in the large-scale Planck data, remains the least well-constrained CDM parameter and is far from its cosmic variance limit. This strengthens the case for future large-scale CMB experiments as well as direct probes of the epoch of reionization.
4 pages, 4 figures, comments welcome! v2: matches published PRL version (title differs)
References in corpus (20)
- Array Programming with NumPy
- The Pantheon+ Analysis: Cosmological Constraints
- Massive neutrinos and cosmology
- DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints
- Model-independent evidence in favor of an end to reionization by z~6
- Effect of Primordial Black Holes on the Cosmic Microwave Background and Cosmological Parameter Estimates
- The Atacama Cosmology Telescope: DR6 Gravitational Lensing Map and Cosmological Parameters
- NuFit-6.0: Updated global analysis of three-flavor neutrino oscillations
- The Atacama Cosmology Telescope: A Measurement of the DR6 CMB Lensing Power Spectrum and its Implications for Structure Growth
- Inferences on the Timeline of Reionization at z~8 From the KMOS Lens-Amplified Spectroscopic Survey
- CMB power spectra and cosmological parameters from Planck PR4 with CamSpec
- Cosmological parameters derived from the final (PR4) Planck data release
- A Significantly Neutral Intergalactic Medium Around the Luminous z=7 Quasar J0252-0503
- Reionization after JWST: a photon budget crisis?
- Massive neutrinos and cosmic composition
- Measuring the reionization optical depth without large-scale CMB polarization
- First Constraints on the Epoch of Reionization Using the non-Gaussianity of the Kinematic Sunyaev-Zel{'}dovich Effect from the South Pole Telescope and {\it Herschel}-SPIRE Observations
- Beyond optical depth: Future determination of ionization history from the CMB
- Testing for spectral index variations in polarised CMB foregrounds
- Reconstructing the epoch of reionisation with Planck PR4
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- Neutrino decays as a natural explanation of the neutrino mass tension
- Dark Acoustic Oscillations as an Early-Universe Explanation of the DESI Anomaly
- KiDS-Legacy: Constraining dark energy, neutrino mass, and curvature
- Conditional variational autoencoders for cosmological model discrimination and anomaly detection in cosmic microwave background power spectra