Curvature corrections to Starobinsky inflation can explain the ACT results

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Curvature corrections to Starobinsky inflation can explain the ACT results

Authors

Andrea Addazi, Yermek Aldabergenov, Sergei V. Ketov

Abstract

We investigate the impact of curvature corrections to Starobinsky inflation in light of the latest observational results from the Atacama Cosmology Telescope (ACT). While the pure Starobinsky model remains a compelling candidate for cosmic inflation, we explore how the higher-order curvature terms R3R^3, R4R^{4} and R3/2R^{3/2} modify the inflationary predictions. Using the scalar-tensor formulation of f(R)f(R) gravity, we derive the effective scalar potentials and compute the resulting scalar tilt nsn_{s} and tensor-to-scalar ratio rr. We show that those curvature corrections can shift the predictions to align better with the ACT data, thus providing a possible resolution to a minor discrepancy between the standard Starobinsky model and ACT observations. Our findings suggest that the modified Starobinsky models with the higher-order curvature terms offer a viable pathway to reconciling inflationary predictions with precision cosmological measurements. At the same time, measuring or constraining primordial tensor modes can help to discriminate between these corrections.

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