arXiv · 2511.01612
Running of the spectral index: Reconciling the CMB with the Lyman-$\alpha$ Forest
Abstract
We investigate the scale dependence of the primordial power spectrum by combining \Planck, ACT DR6, SPT-3G, and eBOSS Lyman-$\alpha$ forest data, extending sensitivity to smaller comoving scales than those probed by the CMB alone. Within a parametrisation based on a Taylor expansion around the pivot scale, we constrain the running of the spectral index $\alpha_s$ and its running $\beta_s$. By using eBOSS likelihoods exhibiting a suppression of small-scale power either in amplitude or spectral index, we show that the latter can be accommodated by correlated variations of $(\alpha_s,\beta_s)$, leading to a preference for non-zero running. We show that inflationary potentials with localised features -- such as Gaussian dips, bumps, or axion-monodromy modulations -- can reproduce the inferred scale dependence while remaining compatible with current CMB constraints. We release the public {\tt PIPE} code to enable systematic tests of inflationary potentials against current CMB datasets.
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Malcolm Fairbairn, Lucien Heurtier, María Olalla Olea-Romacho. 2025-11-03. Running of the spectral index: Reconciling the CMB with the Lyman-$\alpha$ Forest. https://arxiv.org/abs/2511.01612
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