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Large tensor-to-scalar ratio and low scale inflation

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arxiv 0712.2031 v2 pith:74SP7LR7 submitted 2007-12-12 astro-ph gr-qchep-phhep-th

classification astro-phgr-qchep-phhep-th
keywords inflationscalehighphasetensorgravitylargematter
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abstract

It is plausible that the scalar density perturbations are created by a relatively low scale model of inflation which predicts the CMB anisotropy and excites Standard Model baryon and cold dark matter, but negligible gravity waves. Nevertheless a significantly large tensor perturbations can be observed if there exists a prior phase of high scale inflation separated by a matter or radiation dominated epoch. In this paper we provide a simple example when the gravity waves generated at high scales trickle through the horizon of the second phase of inflation and leave a distinct imprint in the spectrum of the tensor modes. For a high scale inflation occurring at $H\sim 10^{13}$ GeV while the second phase of inflation happening at $H\sim 1$ GeV, the largest tensor to scalar ratio is bounded by $r_{\rm observed}\leq0.8$.

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  1. The Dual Primordial Black Hole Formation Scenario

    astro-ph.CO 2025-05 conditional novelty 6.0 of 10

    A single small-scale perturbation can form ultralight black holes during a break in inflation and heavier black holes after inflation, linking reheating to dark matter.

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