Is $Λ$CDM on the run? Reconciling the CMB with the Lyman-$α$ Forest

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Main Authors: Fairbairn, Malcolm, Heurtier, Lucien, Olea-Romacho, María Olalla
Format: Preprint
Published: 2025
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author Fairbairn, Malcolm
Heurtier, Lucien
Olea-Romacho, María Olalla
author_facet Fairbairn, Malcolm
Heurtier, Lucien
Olea-Romacho, María Olalla
contents We present new constraints on the scale dependence of the primordial power spectrum by combining Planck, ACT DR6, SPT-3G and eBOSS Lyman-$α$ forest data, extending sensitivity to smaller comoving scales. While ACT results previously indicated a mild preference for positive running of the spectral index, our joint analysis constrains both the running $α_s$ and its running $β_s$. Including eBOSS markedly tightens these constraints, yielding a $>2σ$ indication of nonzero $α_s$ and/or $β_s$, challenging predictions from vanilla slow-roll inflation potentials. Comparing reconstructed spectral parameters with theoretical models, we find that inflationary potentials with localised dips, bumps, or oscillations better reproduce the observed scale dependence. We release the public PIPE code to test arbitrary inflationary potentials against these datasets.
format Preprint
id arxiv_https___arxiv_org_abs_2511_01612
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Is $Λ$CDM on the run? Reconciling the CMB with the Lyman-$α$ Forest
Fairbairn, Malcolm
Heurtier, Lucien
Olea-Romacho, María Olalla
Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
We present new constraints on the scale dependence of the primordial power spectrum by combining Planck, ACT DR6, SPT-3G and eBOSS Lyman-$α$ forest data, extending sensitivity to smaller comoving scales. While ACT results previously indicated a mild preference for positive running of the spectral index, our joint analysis constrains both the running $α_s$ and its running $β_s$. Including eBOSS markedly tightens these constraints, yielding a $>2σ$ indication of nonzero $α_s$ and/or $β_s$, challenging predictions from vanilla slow-roll inflation potentials. Comparing reconstructed spectral parameters with theoretical models, we find that inflationary potentials with localised dips, bumps, or oscillations better reproduce the observed scale dependence. We release the public PIPE code to test arbitrary inflationary potentials against these datasets.
title Is $Λ$CDM on the run? Reconciling the CMB with the Lyman-$α$ Forest
topic Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2511.01612