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Increase of <i>n<sub>s</sub> </i> in regularized pole inflation &amp; Einstein-Cartan gravity

Minxi He, Muzi Hong, Kyohei Mukaida

2025Journal of Cosmology and Astroparticle Physics24 citationsDOIOpen Access PDF

Abstract

Abstract We show that the regularization of the second order pole in the pole inflation can induce the increase of n s , which may be important after the latest data release of cosmic microwave background (CMB) observation by Atacama Cosmology Telescope (ACT). Pole inflation is known to provide a unified description of attractor models that they can generate a flat plateau for inflation given a general potential. Recent ACT observation suggests that the constraint on the scalar spectral index n s at CMB scale may be shifted to a larger value than the predictions in the Starobinsky model, the Higgs inflation, and the α-attractor model, which motivates us to consider the modification of the pole inflation. We find that if we regularize the second order pole in the kinetic term such that the kinetic term becomes regular for all field range, we can generally increase n_s because the potential in the large field regime will be lifted. We have explicitly demonstrated that this type of regularized pole inflation can naturally arise from the Einstein-Cartan formalism, and the inflationary predictions are consistent with the latest ACT data without spoiling the success of the α-attractor models.

Topics & Concepts

PhysicsCosmic microwave backgroundInflation (cosmology)Kinetic termAttractorCosmic background radiationSpectral indexCosmologyInflatonTheoretical physicsSouth Pole TelescopeScalar (mathematics)Non-GaussianityScalar fieldRegularization (linguistics)Eternal inflationHiggs bosonSpectral densityField (mathematics)Classical mechanicsGravitationPrimordial fluctuationsTerm (time)Inflationary epochHiggs fieldConstraint (computer-aided design)Kinetic energyStatistical physicsHubble's lawSlow rollCosmology and Gravitation TheoriesGeophysics and Gravity MeasurementsBlack Holes and Theoretical Physics
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