4.4 Article

Reheating processes after Starobinsky inflation in old-minimal supergravity

Journal

JOURNAL OF HIGH ENERGY PHYSICS
Volume -, Issue 2, Pages -

Publisher

SPRINGER
DOI: 10.1007/JHEP02(2015)105

Keywords

Cosmology of Theories beyond the SM; Supergravity Models; Supersymmetry Breaking

Funding

  1. Advanced Leading Graduate Course for Photon Science in the University of Tokyo
  2. JSPS [26.10619, 23340058, 269337, 264236]
  3. Munich Institute for Astro- and Particle Physics (MIAPP) of the DFG cluster of excellence Origin and Structure of the Universe
  4. Grants-in-Aid for Scientific Research [14J10619, 23340058, 14J04236, 14J09337] Funding Source: KAKEN

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We study reheating processes and its cosmological consequences in the Starobinsky model embedded in the old-minimal supergravity. First, we consider minimal coupling between the gravity and matter sectors in the higher curvature theory, and transform it to the equivalent standard supergravity coupled to additional matter superfields. We then discuss characteristic decay modes of the inflaton and the reheating temperature T-R. Considering a simple model of supersymmetry breaking sector, we estimate gravitino abundance from inflaton decay, and obtain limits on the masses of gravitino and supersymmetry breaking field. We find T-R similar or equal to 1.0x10(9) GeV and the allowed range of gravitino mass as 10(4) GeV less than or similar to m(3/2) less than or similar to 10(5) GeV, assuming anomaly-induced decay into the gauge sector as the dominant decay channel.

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