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April 1, 2026Nuclear Physics B0 citationsOpen Access

String Corrected Scalar Field Inflation Compatible with the ACT Data

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VOV.K. Oikonomou

Key Points

  • This research aims to investigate the impact of string corrections on inflationary dynamics in minimally coupled scalar field theory.
  • Examined string corrections in minimally coupled single scalar field theory
  • Analyzed the effects of specific correction terms on field equations
  • Developed a self-consistent framework under the slow-roll approximation
  • Identified a trivial non-minimal coupling function in one correction scenario
  • Formulated an inflationary theory compatible with Atacama Cosmology Telescope constraints
  • Derived an inflationary scenario aligning with updated Planck constraints on the tensor-to-scalar ratio

Abstract

We consider the impact of the first string corrections of minimally coupled single scalar field theory on inflationary dynamics. Specifically we consider separately the string corrections ∼ α ′ ξ ( ϕ ) c 2 (∂ μ ϕ ∂ μ ϕ ) 2 and ∼ α ′ cξ ( ϕ )□ ϕ ∂ μ ϕ ∂ μ ϕ , where α ′ is the square of the string scale. Our aim is to develop a theory which is self consistent in the sense that the field equations reproduce themselves in the slow-roll approximation. Such a requirement for the theory with ∼ α ′ ξ ( ϕ ) c 2 (∂ μ ϕ ∂ μ ϕ ) 2 resulted to a trivial non-minimal coupling function ξ ( ϕ ), however a self-consistent framework emerged from the theory with correction term ∼ α ′ cξ ( ϕ )□ ϕ ∂ μ ϕ ∂ μ ϕ . The resulting theory can easily be worked out analytically and we obtained an inflationary theory that can easily be fitted with the Atacama Cosmology Telescope constraints on the scalar spectral index and the updated Planck constraints on the tensor-to-scalar ratio.

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Cite This Study

V.K. Oikonomou (2026) studied this question.

synapsesocial.com/papers/69ccb55116edfba7beb875b2https://doi.org/10.1016/j.nuclphysb.2026.117437
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