Observational Viability of Anisotropic Inflation Revisited
arXiv:2503.08277 · doi:10.1088/1402-4896/adbb30
Abstract
We investigate anisotropic inflation within the single-field model featuring an intermediate scale factor. Our analysis reveals that the anisotropic nature of the Friedmann equations in this framework affects the slow-roll parameters, which in turn influence key perturbation parameters. Using a numerical approach, we derive constraints on the intermediate parameter and the anisotropic parameter . Our results show that the model is consistent with Planck2018 TT, TE, EE +lowE+lensing+BK14+BAO data at CL, for and . At CL the consistency holds for and . The model is also consistent with Planck2018 TT, TE, EE +lowE+lensing+BK18+BAO data, for and (at CL), and and (at CL). Additionally, we examine the reheating phase using these constraints on constraints on and and determine the observationally consistent ranges for the number of e-folds and the temperature during the reheating phase.
12 pages, 5 figures, 3 tables
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