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Constraining scalar-Gauss-Bonnet Inflation by Reheating, Unitarity and PLANCK

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arxiv 1606.00698 v3 pith:YMVIDZBB submitted 2016-05-30 gr-qc hep-th

classification gr-qchep-th
keywords betacouplinggauss-bonnetreheatinginflationaryinvolvingplanckunitarity
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abstract

We revisit the inflationary dynamics in detail for theories with Gauss-Bonnet gravity coupled to scalar functions, in light of the Planck data. Considering the chaotic inflationary scenario, we constrain the parameters of two models involving inflaton-Gauss-Bonnet coupling by current Planck data. For non zero inflaton-Gauss-Bonnet coupling $\beta$, an inflationary analysis provides us a big cosmologically viable region in the space of $(m,\beta)$, where $m$ is the mass of inflaton. However, we study further on constraining $\beta$ arising from reheating considerations and unitarity of tree-level amplitude involving we have studied the constraints on $\beta$ arising from reheating considerations and unitarity of tree level amplitude involving $2$ graviton $\rightarrow 2$ graviton ($h h\rightarrow hh$) scattering. Our analysis, particularly on reheating significantly reduces the parameter space of $(m,\beta)$ for all models. he quadratic Gauss-Bonnet coupling parameter turns out to be more strongly constrained than that of the linear coupling. For the linear Gauss-Bonnet coupling function, we obtain $\beta \lesssim 10^3$, with the condition $\beta (m/M_P)^2 \simeq 10^{-4}$. However, study of the Higgs inflation scenario in the presence of Gauss-Bonnet term turned out to be strongly disfavored.

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  1. Effective reheating in Gauss--Bonnet inflation with $\mu(\phi,X)$ coupling

    astro-ph.CO 2026-08 conditional novelty 5.0 of 10

    In a Gauss–Bonnet inflationary model with μ(ϕ,X) coupling, stronger Gauss–Bonnet coupling lengthens reheating and lowers its temperature in reference benchmarks, while the kinetic-gate effect can reverse sign once the...

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