Adding a negative R^3 term to Starobinsky-Higgs inflation raises the CMB spectral index from about 0.94 to 0.965, making the model consistent with Planck while preserving the small-scale curvature enhancement needed for primordial black hole dark matter.
The Dual Primordial Black Hole Formation Scenario
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abstract
We report a novel mechanism where two families of primordial black holes (PBHs) may form at nearly the same comoving scales but at two different epochs. It is realized in two-stage inflation where a non-inflationary stage is sandwiched by the two inflationary stages. In this case, smaller PBHs form when the comoving scale of interest re-enters the horizon during the break period, and larger PBHs form when the scale re-enters the horizon after inflation. This mechanism may realize both reheating of the universe through the evaporation of ultralight PBHs formed during the break stage and the dark matter by those formed after inflation. We show that this scenario may give rise to a distinctive signature in the stochastic gravitational wave background that can be tested by the near-future gravitational wave observatories such as LISA and DECIGO. Our work thus provides a unified observational window into the physics of inflation, reheating, and dark matter.
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Enhancement of primordial curvature perturbations in $R^3$-corrected Starobinsky-Higgs inflation
Adding a negative R^3 term to Starobinsky-Higgs inflation raises the CMB spectral index from about 0.94 to 0.965, making the model consistent with Planck while preserving the small-scale curvature enhancement needed for primordial black hole dark matter.