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    Cosmological perturbations from a new approach to inflation

    Brandon Melcher1,*, Arnab Pradhan2,†, and Scott Watson2,3,‡

    • 1Applied Physics, PBC 477 Madison Avenue, New York, New York 10022, USA
    • 2Department of Physics, Syracuse University, Syracuse, New York 13244, USA
    • 3Department of Physics and Astronomy, University of South Carolina, Columbia, South Carolina 29208, USA

    • *Contact author: brandon@appliedphysics.org
    • †Contact author: arpradha@syr.edu
    • ‡Contact author: gswatson@syr.edu

    Phys. Rev. D 112, 063542 – Published 22 September, 2025

    DOI: https://doi.org/10.1103/9nfj-l66k

    Abstract

    In a previous paper, we proposed a new approach to the beginning of inflation—a lingering universe [Melcher et al. Phys. Rev. D 110, 063517 (2024).]—that is a quasistatic phase prior to inflation. The Universe begins in a lingering state with a nearly vanishing Hubble parameter. This calls into question the absolute age of the Universe, as the Hubble time can be nearly infinite. It also provides promise for addressing the initial singularity of inflation and issues with quantum field theory in de Sitter spacetime. Such models arise in classical cosmologies with nonvanishing spatial curvature (inspired by PLANCK 2018 data) and independently by models that arise in string cosmology. In this paper, we consider the importance of cosmological perturbations for the stability of the lingering phase and how this influences cosmological observations. Our goal is to establish observables in this new paradigm for the origin of inflation, which is in contrast to eternal inflation and cyclic cosmologies. We also address questions of stability and the transition to inflation.

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