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      Amplification of primordial perturbations from the rise or fall of the inflaton

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      Journal of Cosmology and Astroparticle Physics
      IOP Publishing

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          Abstract

          The next generation of cosmic microwave background, gravitational wave, and large scale structure, experiments will provide an unprecedented opportunity to probe the primordial power spectrum on small scales. An exciting possibility for what lurks on small scales is a sharp rise in the primordial power spectrum: this can lead to the formation of primordial black holes, providing a dark matter candidate or the black holes observed by the LIGO-Virgo collaboration. In this work we develop a mechanism for the amplification of the small-scale primordial power spectrum, in the context of single-field inflation with a step-like feature in the inflaton potential. Specifically, we consider both the upward and the downward step in the potential. We also discuss the possibility of the strong coupling between perturbations because the rapid changes of the potential derivatives with the time-dependent field value, caused by the step-like feature, could make the coupling stronger. As a result, we find that the perturbations can remain weakly coupled yet sufficiently enhanced if the step realizes the rapid changes of the potential derivatives in some fraction of an e-fold, 𝒪(𝒫 1/2) ≲ Δ N < 1, where 𝒫 is the power spectrum of the curvature perturbation at that time. We also discuss the PBH formation rate from the inflaton trapping at the local minimum, which can occur in the potential with an upward step.

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          Non-Linear Theory of Gravitational Instability in the Expanding Universe

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            CMB-S4 Science Book, First Edition

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              Author and article information

              Journal
              Journal of Cosmology and Astroparticle Physics
              J. Cosmol. Astropart. Phys.
              IOP Publishing
              1475-7516
              February 18 2022
              February 01 2022
              February 18 2022
              February 01 2022
              : 2022
              : 02
              : 031
              Article
              10.1088/1475-7516/2022/02/031
              7f6616ab-6fab-455f-b742-635c9f81e0ac
              © 2022

              https://iopscience.iop.org/page/copyright

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