arXiv:2510.18656·v1·High Energy Physics — Phenomenology
Constraints on Attractor Models of Inflation and Reheating from Planck, BICEP/Keck, ACT DR6, and SPT-3G Data
John Ellis🇬🇧 · Marcos A. G. Garcia🇲🇽 · Keith A. Olive🇺🇸 · Sarunas Verner🇺🇸
Abstract
We analyze the latest cosmic microwave background (CMB) constraints on the scalar spectral index and tensor-to-scalar ratio from Planck 2018, BICEP/Keck 2018, the Atacama Cosmology Telescope Data Release 6 (ACT DR6), and the South Pole Telescope (SPT-3G) data, focusing on their implications for attractor models of inflation. We compare systematically observational bounds with theoretical predictions for both E-model (-Starobinsky) and T-model potentials. The observational constraints accommodate E-models with , with the canonical Starobinsky model () predicting for reheating temperatures between GeV, in good agreement with Planck 2018 data and within the 95% CL region determined by the Planck-ACT-SPT combination, but below the 95% confidence region of the Planck-ACT-DESI combination. Higher reheating temperatures from near-instantaneous reheating improve the compatibility. T-models predict slightly lower values (0.956-0.961), in some tension with Planck 2018 data, and we find an upper limit of in these models. We extend our analysis to generalized -attractors with monomial potentials near the minimum, demonstrating that models with naturally predict for typical number of -folds, in better agreement with the ACT DR6 data. We also consider deformed E- and T-models, which allow significantly higher values of for low values of .
Comments: 9 figures, 25 pages