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Reheating in two-sector cosmology

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arxiv 1906.02755 v2 pith:6XTWUF2K submitted 2019-06-06 hep-ph astro-ph.COhep-th

classification hep-phastro-ph.COhep-th
keywords reheatingtemperatureasymmetryduringinflaton-mediatedquantumsectortemperatures
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abstract

We analyze reheating scenarios where a hidden sector is populated during reheating along with the sector containing the Standard Model. We numerically solve the Boltzmann equations describing perturbative reheating of the two sectors, including the full dependence on quantum statistics, and study how quantum statistical effects during reheating as well as the non-equilibrium inflaton-mediated energy transfer between the two sectors affects the temperature evolution of the two radiation baths. We obtain new power laws describing the temperature evolution of fermions and bosons when quantum statistics are important during reheating. We show that inflaton-mediated scattering is generically most important at radiation temperatures $T\sim M_\phi/4$, and build on this observation to obtain analytic estimates for the temperature asymmetry produced by asymmetric reheating. We find that for reheating temperatures $T_{\textrm{rh}} \ll M_{\phi}/4$, classical perturbative reheating provides an excellent approximation to the final temperature asymmetry, while for $T_{\textrm{rh}}\gg M_{\phi}/4$, inflaton-mediated scattering dominates the population of the colder sector and thus the final temperature asymmetry. We additionally present new techniques to calculate energy transfer rates between two relativistic species at different temperatures.

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Cited by 2 Pith papers

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  1. Reheating the FCC: Probing Early Matter Domination with Long-Lived Particles

    hep-ph 2026-07 conditional novelty 5.0 of 10

    FCC-hh displaced-vertex searches could probe Higgs-portal scalars whose decays ended an early matter-dominated era at temperatures from ~1 GeV to the electroweak scale.

  2. Constraining Reheating Temperature, Inflaton-SM Coupling and Dark Matter Mass in Light of ACT DR6 Observations

    hep-ph 2025-05 conditional novelty 4.0 of 10

    Using ACT DR6 plus Planck, BICEP/Keck and DESI data, the authors update bounds on alpha-attractor reheating temperature, inflaton-SM couplings, and gravitationally produced dark matter mass.

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