Primordial black hole dark matter in dilaton-extended two-field Starobinsky inflation

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Abstract

We investigate the production of primordial black holes and their contribution to the presently observed dark matter in a dilaton two-field extension of Starobinsky's quadratic f(R) model of inflation. The model features a multi-field amplification mechanism which leads to the generation of a sharp peak in the inflationary power spectrum at small wavelengths responsible for the production of primordial black holes. This mechanism is significantly different from single-field models and requires a stochastic treatment during an intermediate phase of the inflationary dynamics. We find that the model leads to a successful phase of effective single-field Starobinsky inflation for wavelengths probed by the cosmic microwave background radiation and explains the observed cold dark matter content in the Universe by the formation of primordial black holes.

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Gundhi, A., Ketov, S. V., & Steinwachs, C. F. (2021). Primordial black hole dark matter in dilaton-extended two-field Starobinsky inflation. Physical Review D, 103(8). https://doi.org/10.1103/PhysRevD.103.083518

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